Template:Infobox element/symbol-to-oxidation-state and Template:Infobox element/symbol-to-oxidation-state/sandbox: Difference between pages
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imported>Nucleus hydro elemon mNo edit summary |
imported>AManWithNoPlan fix dead link |
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| H={{#switch:{{{format|}}} | | H={{#switch:{{{format|}}} | ||
|main=−1, +1 | |main=−1, +1 | ||
|complete|complete_no_comment|#default={{resize|1=112%|2='''−1'''}} | |complete|complete_no_comment|#default={{resize|1=112%|2='''−1'''}}, {{resize|1=112%|2='''+1'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| He={{#switch:{{{format|}}} | | He={{#switch:{{{format|}}} | ||
|main=0 | |main=0 | ||
|complete|complete_no_comment|#default | |complete|complete_no_comment|#default='''0''' | ||
}} | }} | ||
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| Li={{#switch:{{{format|}}} | | Li={{#switch:{{{format|}}} | ||
|main=+1 | |main=+1 | ||
|complete|complete_no_comment|#default= | |complete|complete_no_comment|#default={{resize|1=112%|2='''+1'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=strongly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Be={{#switch:{{{format|}}} | | Be={{#switch:{{{format|}}} | ||
|main=+2 | |main=+2 | ||
|complete|complete_no_comment|#default= | |complete|complete_no_comment|#default=+1,<ref>{{cite web|url=http://bernath.uwaterloo.ca/media/252.pdf|title=Beryllium: Beryllium(I) Hydride compound data|accessdate=2007-12-10|publisher=bernath.uwaterloo.ca}}</ref> {{resize|1=112%|2='''+2'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| B={{#switch:{{{format|}}} | | B={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default=−5, −1, | |complete|complete_no_comment|#default=−5, −1, +1, +2, {{resize|1=112%|2='''+3'''}}<ref>{{cite journal| url=http://bernath.uwaterloo.ca/media/125.pdf| title=Infrared Emission Spectroscopy of BF and AIF| author1=Zhang, K.Q.| author2=Guo, B.|author3=Braun, V.| author4=Dulick, M.| author5=Bernath, P.F.| journal=J. Molecular Spectroscopy| volume=170| issue=1| year=1995| page=82| doi=10.1006/jmsp.1995.1058|bibcode=1995JMoSp.170...82Z}}</ref><ref>{{cite thesis|url=https://d-nb.info/995006210/34|author=Melanie Schroeder|title=Eigenschaften von borreichen Boriden und Scandium-Aluminium-Oxid-Carbiden|page=139|language=de}}</ref> {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=mildly acidic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| C={{#switch:{{{format|}}} | | C={{#switch:{{{format|}}} | ||
|main=−4 | |main=−4, +4 | ||
|complete|complete_no_comment|#default= | |complete|complete_no_comment|#default= | ||
{{resize|1=112%|2='''−4'''}}, [[Ethane|−3]], [[Methanol|−2]], [[Carbide|−1]], [[Formaldehyde|0]], +1,<ref>{{cite web|url=http://bernath.uwaterloo.ca/media/42.pdf|title=Fourier Transform Spectroscopy of the Electronic Transition of the Jet-Cooled CCI Free Radical|accessdate=2007-12-06}}</ref> +2, +3,<ref>{{cite web |url=http://bernath.uwaterloo.ca/media/36.pdf|title=Fourier Transform Spectroscopy of the System of CP|accessdate=2007-12-06}}</ref> {{resize|1=112%|2='''+4'''}}<ref>{{cite web |url=http://www.webelements.com/webelements/elements/text/C/comp.html|title=Carbon: Binary compounds|accessdate=2007-12-06}}</ref> {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=mildly acidic|engvar={{{engvar|}}}}}}} | |||
}} | }} | ||
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|main=−3, +3, +5 | |main=−3, +3, +5 | ||
|complete|complete_no_comment|#default= | |complete|complete_no_comment|#default= | ||
{{resize|1=112%|2='''−3'''}}, −2, −1, | {{resize|1=112%|2='''−3'''}}, −2, −1, +1, +2, {{resize|1=112%|2='''+3'''}}, +4, {{resize|1=112%|2='''+5'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=strongly acidic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
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|main=−2 | |main=−2 | ||
|complete|complete_no_comment|#default= | |complete|complete_no_comment|#default= | ||
{{resize|1=112%|2='''−2'''}}, [[peroxide|−1 | {{resize|1=112%|2='''−2'''}}, [[peroxide|−1]], [[Dioxygen difluoride|+1]], [[Oxygen difluoride|+2]] | ||
}} | }} | ||
| F={{#switch:{{{format|}}} | | F={{#switch:{{{format|}}} | ||
|main=−1 | |main=−1 | ||
|complete|complete_no_comment|#default={{resize|1=112%|2='''−1'''}} | |complete|complete_no_comment|#default={{resize|1=112%|2='''−1'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=oxidizes oxygen|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Ne={{#switch:{{{format|}}} | | Ne={{#switch:{{{format|}}} | ||
|main=0 | |main=0 | ||
|complete|complete_no_comment|#default | |complete|complete_no_comment|#default='''0''' | ||
}} | }} | ||
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| Na={{#switch:{{{format|}}} | | Na={{#switch:{{{format|}}} | ||
|main=+1 | |main=+1 | ||
|complete|complete_no_comment|#default=−1, | |complete|complete_no_comment|#default=−1, {{resize|1=112%|2='''+1'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=strongly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Mg={{#switch:{{{format|}}} | | Mg={{#switch:{{{format|}}} | ||
|main=+2 | |main=+2 | ||
|complete|complete_no_comment|#default= | |complete|complete_no_comment|#default= | ||
|journal=Astrophysical Journal|volume=298| year=1985| page=375}} | +1,<ref>{{cite journal|url=http://bernath.uwaterloo.ca/media/24.pdf| title=The spectrum of magnesium hydride |author=Bernath, P. F. |author2=Black, J. H. |author3=Brault, J. W. |name-list-style=amp |bibcode=1985ApJ...298..375B | doi=10.1086/163620 | ||
|journal=Astrophysical Journal|volume=298| year=1985| page=375}}</ref> {{resize|1=112%|2='''+2'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=strongly basic|engvar={{{engvar|}}}}}}} | |||
}} | }} | ||
| Al={{#switch:{{{format|}}} | | Al={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default=−2, −1, | |complete|complete_no_comment|#default=−2, −1, +1,<ref>{{cite journal| title = Aluminum(I) and Gallium(I) Compounds: Syntheses, Structures, and Reactions|author1=Dohmeier, C. |author2=Loos, D. |author3=Schnöckel, H. | journal = Angewandte Chemie International Edition | year =1996| volume =35|issue=2 | pages =129–149| doi =10.1002/anie.199601291}}</ref> +2,<ref>{{cite journal| author = D. C. Tyte | title = Red (B2Π–A2σ) Band System of Aluminium Monoxide| doi = 10.1038/202383a0 | journal = Nature | volume = 202| issue = 4930 | year = 1964| page = 383 | bibcode=1964Natur.202..383T}}</ref> {{resize|1=112%|2='''+3'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Si={{#switch:{{{format|}}} | | Si={{#switch:{{{format|}}} | ||
|main=+4 | |main=−4, +4 | ||
|complete|complete_no_comment|#default=−4, −3, −2, −1, | |complete|complete_no_comment|#default={{resize|1=112%|2='''−4'''}}, −3, −2, −1, +1,<ref>{{cite journal|author=Ram, R. S.|title=Fourier Transform Emission Spectroscopy of the A2D–X2P Transition of SiH and SiD|url=http://bernath.uwaterloo.ca/media/184.pdf |journal=J. Mol. Spectr. |volume=190|issue=2|pages=341–352|year=1998|pmid=9668026|display-authors=etal|doi=10.1006/jmsp.1998.7582}}</ref> +2, +3, {{resize|1=112%|2='''+4'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| P ={{#switch:{{{format|}}} | | P ={{#switch:{{{format|}}} | ||
|main=−3, +3, +5 | |main=−3, +3, +5 | ||
|complete|complete_no_comment|#default={{resize|1=112%|2='''−3'''}}, −2, −1, | |complete|complete_no_comment|#default={{resize|1=112%|2='''−3'''}}, −2, −1, +1,<ref>{{cite journal|doi=10.1021/ic060186o|pmid=16903744|title=Phosphorus(I) Iodide: A Versatile Metathesis Reagent for the Synthesis of Low Oxidation State Phosphorus Compounds|year=2006|last1=Ellis|first1=Bobby D.|last2=MacDonald|first2=Charles L. B.|journal=Inorganic Chemistry|volume=45|issue=17|pages=6864–74}}</ref> +2, {{resize|1=112%|2='''+3'''}}, +4, {{resize|1=112%|2='''+5'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=mildly acidic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| S={{#switch:{{{format|}}} | | S={{#switch:{{{format|}}} | ||
|main=−2, +2, +4, +6 | |main=−2, +2, +4, +6 | ||
|complete|complete_no_comment|#default={{resize|1=112%|2='''−2'''}}, −1 | |complete|complete_no_comment|#default={{resize|1=112%|2='''−2'''}}, −1, [[Disulfur dichloride|+1]], {{resize|1=112%|2='''+2'''}}, +3, {{resize|1=112%|2='''+4'''}}, +5, {{resize|1=112%|2='''+6'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=strongly acidic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
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|main=−1, +1, +3, +5, +7 | |main=−1, +1, +3, +5, +7 | ||
|complete|complete_no_comment|#default= | |complete|complete_no_comment|#default= | ||
{{resize|1=112%|2='''−1'''}} | {{resize|1=112%|2='''−1'''}}, {{resize|1=112%|2='''+1'''}}, +2, {{resize|1=112%|2='''+3'''}}, +4, {{resize|1=112%|2='''+5'''}}, +6, {{resize|1=112%|2='''+7'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=strongly acidic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Ar={{#switch:{{{format|}}} | | Ar={{#switch:{{{format|}}} | ||
|main=0 | |main=0 | ||
|complete|complete_no_comment|#default | |complete|complete_no_comment|#default='''0''' | ||
}} | }} | ||
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|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default= | |complete|complete_no_comment|#default= | ||
+1,<ref name="Smith">{{cite journal|title=Diatomic Hydride and Deuteride Spectra of the Second Row Transition Metals|first=R. E.|last=Smith | journal=Proceedings of the Royal Society of London. Series A, Mathematical and Physical Sciences|volume=332|pages=113–127|issue=1588|year=1973|doi=10.1098/rspa.1973.0015|bibcode=1973RSPSA.332..113S }}</ref> +2,<ref name="McGuire">{{cite journal|title=Preparation and Properties of Scandium Dihydride|first=Joseph C.|last=McGuire|author2=Kempter, Charles P.|journal=Journal of Chemical Physics|volume=33|issue=5|pages=1584–1585|year=1960|doi=10.1063/1.1731452|bibcode=1960JChPh..33.1584M }}</ref> {{resize|1=112%|2='''+3'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | |||
}} | }} | ||
| Ti={{#switch:{{{format|}}} | | Ti={{#switch:{{{format|}}} | ||
|main= | |main=+4 | ||
|complete|complete_no_comment|#default=−2, −1, | |complete|complete_no_comment|#default=−2, −1, +1, +2, +3, {{resize|1=112%|2='''+4'''}}<ref>{{cite journal|author=Andersson, N.|title=Emission spectra of TiH and TiD near 938 nm|url=http://bernath.uwaterloo.ca/media/257.pdf|journal=J. Chem. Phys.|volume=118|issue=8|year=2003|page=10543|doi=10.1063/1.1539848|bibcode=2003JChPh.118.3543A |display-authors=etal}}</ref> {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| V={{#switch:{{{format|}}} | | V={{#switch:{{{format|}}} | ||
|main= | |main=+5 | ||
|complete|complete_no_comment|#default=−3, −1 | |complete|complete_no_comment|#default=−3, −1, +1, +2, +3, +4, {{resize|1=112%|2='''+5'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Cr={{#switch:{{{format|}}} | | Cr={{#switch:{{{format|}}} | ||
|main= | |main=+3, +6 | ||
|complete|complete_no_comment|#default=−4, −2, −1 | |complete|complete_no_comment|#default=−4, −2, −1, +1, +2, {{resize|1=112%|2='''+3'''}}, +4, +5, {{resize|1=112%|2='''+6'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=depending|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Mn={{#switch:{{{format|}}} | | Mn={{#switch:{{{format|}}} | ||
|main=+2 | |main=+2, +4, +7 | ||
|complete|complete_no_comment|#default=−3, −1 | |complete|complete_no_comment|#default=−3, −2, −1, +1, {{resize|1=112%|2='''+2'''}}, +3, {{resize|1=112%|2='''+4'''}}, +5, +6, {{resize|1=112%|2='''+7'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=depending|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Fe={{#switch:{{{format|}}} | | Fe={{#switch:{{{format|}}} | ||
|main=+2, +3 | |main=+2, +3, +6 | ||
|complete|complete_no_comment|#default=−4, −2, −1 | |complete|complete_no_comment|#default=−4, −2, −1, +1,<ref>{{cite journal|url=http://bernath.uwaterloo.ca/media/266.pdf|author1=Ram, R. S. |author2=Bernath, P. F. |name-list-style=amp | journal=Journal of Molecular Spectroscopy |volume=221| year=2003| page=261|bibcode=2003JMoSp.221..261R |doi=10.1016/S0022-2852(03)00225-X|title=Fourier transform emission spectroscopy of the g<sup>4</sup>Δ-a<sup>4</sup>Δ system of FeCl|issue=2 }}</ref> {{resize|1=112%|2='''+2'''}}, {{resize|1=112%|2='''+3'''}}, +4, +5,<ref>{{cite journal|doi=10.1002/zaac.19824910109|title=Recent developments in the field of high oxidation states of transition elements in oxides stabilization of Six-coordinated Iron(V)|year=1982|author=Demazeau, G.|journal=Zeitschrift für anorganische und allgemeine Chemie|volume=491|pages=60–66|last2=Buffat|first2=B.|last3=Pouchard|first3=M.|last4=Hagenmuller|first4=P.}}</ref> {{resize|1=112%|2='''+6'''}}, +7<ref>{{cite journal|doi= 10.1039/C6CP06753K|pmid=27812577|title=Experimental and theoretical identification of the Fe(VII) oxidation state in FeO4−|year=2016|author=Lu, J.|journal=Physical Chemistry Chemical Physics|volume=18|issue=45|pages=31125–31131|last2=Jian|first2=J.|last3=Huang|first3=W.|last4=Lin|first4=H.|last5=Li|first5=J|last6=Zhou|first6=M.|bibcode=2016PCCP...1831125L}}</ref> {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Co={{#switch:{{{format|}}} | | Co={{#switch:{{{format|}}} | ||
|main=+2, +3 | |main=+2, +3 | ||
|complete|complete_no_comment|#default=−3, −1 | |complete|complete_no_comment|#default=−3, −1, +1, {{resize|1=112%|2='''+2'''}}, {{resize|1=112%|2='''+3'''}}, +4, +5<ref name=greenwood>{{Greenwood&Earnshaw2nd|pages=1117–1119}}</ref> {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Ni={{#switch:{{{format|}}} | | Ni={{#switch:{{{format|}}} | ||
|main=+2 | |main=+2 | ||
|complete|complete_no_comment|#default=−2, −1 | |complete|complete_no_comment|#default=−2, −1, +1,<ref>{{cite journal| title=A Dinuclear Nickel(I) Dinitrogen Complex and its Reduction in Single-Electron Steps| journal=Angewandte Chemie International Edition| year=2009| volume=48 | issue=18| pages=3357–61| doi=10.1002/anie.200805862| last1=Pfirrmann| first1=Stefan| last2=Limberg| first2=Christian| last3=Herwig| first3=Christian| last4=Stößer| first4=Reinhard| last5=Ziemer| first5=Burkhard| pmid=19322853}}</ref> {{resize|1=112%|2='''+2'''}}, +3, +4<ref>{{cite journal| title=A Stable Tetraalkyl Complex of Nickel(IV)| journal=Angewandte Chemie International Edition| year=2009| volume=48 | issue=2| pages=290–4| doi=10.1002/anie.200804435| last1=Carnes| first1=Matthew| last2=Buccella| first2=Daniela| last3=Chen| first3=Judy Y.-C.| last4=Ramirez| first4=Arthur P.| last5=Turro| first5=Nicholas J.| last6=Nuckolls| first6=Colin| last7=Steigerwald| first7=Michael| pmid=19021174}}</ref> {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=mildly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Cu={{#switch:{{{format|}}} | | Cu={{#switch:{{{format|}}} | ||
|main= | |main=+2 | ||
|complete|complete_no_comment|#default=−2, | |complete|complete_no_comment|#default=−2, +1, {{resize|1=112%|2='''+2'''}}, +3, +4 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=mildly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
Line 162: | Line 163: | ||
| Ga={{#switch:{{{format|}}} | | Ga={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default=−5, −4, −3,<ref>Ga(−3) has been observed in LaGa, see {{cite journal|lang=de|first1=Ines|last1=Dürr|first2=Britta|last2=Bauer|first3=Caroline|last3=Röhr|title=Lanthan-Triel/Tetrel-ide La(Al,Ga)<sub>''x''</sub>(Si,Ge)<sub>1-''x''</sub>. Experimentelle und theoretische Studien zur Stabilität intermetallischer 1:1-Phasen|journal=Z. Naturforsch.|year=2011|volume=66b|pages=1107–1121|url=http://www.znaturforsch.com/s66b/s66b1107.pdf}}</ref> −2, −1 | |complete|complete_no_comment|#default=−5, −4, −3,<ref>Ga(−3) has been observed in LaGa, see {{cite journal|lang=de|first1=Ines|last1=Dürr|first2=Britta|last2=Bauer|first3=Caroline|last3=Röhr|title=Lanthan-Triel/Tetrel-ide La(Al,Ga)<sub>''x''</sub>(Si,Ge)<sub>1-''x''</sub>. Experimentelle und theoretische Studien zur Stabilität intermetallischer 1:1-Phasen|journal=Z. Naturforsch.|year=2011|volume=66b|pages=1107–1121|url=http://www.znaturforsch.com/s66b/s66b1107.pdf}}</ref> −2, −1, +1, +2, {{resize|1=112%|2='''+3'''}}<ref>{{cite book|url=http://www.uni-kassel.de/upress/online/frei/978-3-7281-2597-2.volltext.frei.pdf|author=Hofmann, Patrick |title=Colture. Ein Programm zur interaktiven Visualisierung von Festkörperstrukturen sowie Synthese, Struktur und Eigenschaften von binären und ternären Alkali- und Erdalkalimetallgalliden|page=72|language=de|date=1997|publisher=PhD Thesis, ETH Zurich|doi=10.3929/ethz-a-001859893|isbn=978-3728125972}}</ref> {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Ge={{#switch:{{{format|}}} | | Ge={{#switch:{{{format|}}} | ||
|main=+2, +4 | |main=−4, +2, +4 | ||
|complete|complete_no_comment|#default=−4 | |complete|complete_no_comment|#default={{resize|1=112%|2='''−4'''}} −3, −2, −1, 0, +1, {{resize|1=112%|2='''+2'''}}, +3, {{resize|1=112%|2='''+4'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
Line 173: | Line 174: | ||
|main=−3, +3, +5 | |main=−3, +3, +5 | ||
|complete|complete_no_comment|#default= | |complete|complete_no_comment|#default= | ||
{{resize|1=112%|2='''−3'''}}, −2, −1, | {{resize|1=112%|2='''−3'''}}, −2, −1, +1,<ref>{{cite journal|doi=10.1021/ic049281s|pmid=15360247|title=Stabilized Arsenic(I) Iodide: A Ready Source of Arsenic Iodide Fragments and a Useful Reagent for the Generation of Clusters|year=2004|last1=Ellis|first1=Bobby D.|last2=MacDonald|first2=Charles L. B.|journal=Inorganic Chemistry|volume=43|issue=19|pages=5981–6}}</ref> +2, {{resize|1=112%|2='''+3'''}}, +4, {{resize|1=112%|2='''+5'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=mildly acidic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Se={{#switch:{{{format|}}} | | Se={{#switch:{{{format|}}} | ||
|main=−2, +2, +4, +6 | |main=−2, +2, +4, +6 | ||
|complete|complete_no_comment|#default={{resize|1=112%|2='''−2'''}}, −1, | |complete|complete_no_comment|#default={{resize|1=112%|2='''−2'''}}, −1, +1,<ref>{{Greenwood&Earnshaw}}</ref> {{resize|1=112%|2='''+2'''}}, +3, {{resize|1=112%|2='''+4'''}}, +5, {{resize|1=112%|2='''+6'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=strongly acidic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Br={{#switch:{{{format|}}} | | Br={{#switch:{{{format|}}} | ||
|main=−1, +1, +3, +5 | |main=−1, +1, +3, +5 | ||
|complete|complete_no_comment|#default={{resize|1=112%|2='''−1'''}} | |complete|complete_no_comment|#default={{resize|1=112%|2='''−1'''}}, {{resize|1=112%|2='''+1'''}}, {{resize|1=112%|2='''+3'''}}, +4, {{resize|1=112%|2='''+5'''}}, +7 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=strongly acidic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Kr={{#switch:{{{format|}}} | | Kr={{#switch:{{{format|}}} | ||
|main=0 | |main=0 | ||
|complete|complete_no_comment|#default | |complete|complete_no_comment|#default='''0''', +1, +2 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=rarely non-0, unk oxide|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
Line 204: | Line 205: | ||
| Y={{#switch:{{{format|}}} | | Y={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce | |complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce, Pm, Eu, Tm, Yb have been observed in the oxidation state 0 in bis(1,3,5-tri-t-butylbenzene) complexes, see {{cite journal |journal=Chem. Soc. Rev. |date=1993 |volume=22 |pages=17–24 |first=F. Geoffrey N. |last=Cloke |title=Zero Oxidation State Compounds of Scandium, Yttrium, and the Lanthanides |doi=10.1039/CS9932200017 }}</ref> +1, +2, {{resize|1=112%|2='''+3'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=weakly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Zr={{#switch:{{{format|}}} | | Zr={{#switch:{{{format|}}} | ||
|main=+4 | |main=+4 | ||
|complete|complete_no_comment| + | |complete|complete_no_comment|#default=−2, +1,<ref>{{cite web|url=http://openmopac.net/data_normal/zirconium(i)%20fluoride_jmol.html|title=Zirconium: zirconium(I) fluoride compound data|accessdate=2007-12-10|publisher=OpenMOPAC.net}}</ref> +2, +3, {{resize|1=112%|2='''+4'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
{{ | |||
}} | }} | ||
| Nb={{#switch:{{{format|}}} | | Nb={{#switch:{{{format|}}} | ||
|main=+5 | |main=+5 | ||
|complete|complete_no_comment|#default=−3, −1 | |complete|complete_no_comment|#default=−3, −1, +1, +2, +3, +4, {{resize|1=112%|2='''+5'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=mildly acidic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Mo={{#switch:{{{format|}}} | | Mo={{#switch:{{{format|}}} | ||
|main=+4, +6 | |main=+4, +6 | ||
|complete|complete_no_comment|#default=−4, −2, −1 | |complete|complete_no_comment|#default=−4, −2, −1, +1,<ref>{{cite web|url=http://openmopac.net/data_normal/molybdenum(i)%20fluoride_jmol.html|title=Molybdenum: molybdenum(I) fluoride compound data|accessdate=2007-12-10|publisher=OpenMOPAC.net}}</ref> +2, +3, {{resize|1=112%|2='''+4'''}}, +5, {{resize|1=112%|2='''+6'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=strongly acidic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Tc={{#switch:{{{format|}}} | | Tc={{#switch:{{{format|}}} | ||
|main=+4, +7 | |main=+4, +7 | ||
|complete|complete_no_comment|#default= | |complete|complete_no_comment|#default=−3, +1,<ref name="OpenMOPAC"/> +2, +3,<ref name="OpenMOPAC">{{cite web|url=http://openmopac.net/data_normal/technetium(iii)%20triiodide_jmol.html|title=Technetium: technetium(III) iodide compound data|accessdate=2007-12-10|publisher=OpenMOPAC.net}}</ref> {{resize|1=112%|2='''+4'''}}, +5, +6, {{resize|1=112%|2='''+7'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=strongly acidic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Ru={{#switch:{{{format|}}} | | Ru={{#switch:{{{format|}}} | ||
|main=+3, +4 | |main=+3, +4 | ||
|complete|complete_no_comment|#default=−4, −2 | |complete|complete_no_comment|#default=−4, −2, +1,<ref>{{cite web|url=http://openmopac.net/data_normal/ruthenium(i)%20fluoride_jmol.html|title=Ruthenium: ruthenium(I) fluoride compound data|accessdate=2007-12-10|publisher=OpenMOPAC.net}}</ref> +2, {{resize|1=112%|2='''+3'''}}, {{resize|1=112%|2='''+4'''}}, +5, +6, +7, +8 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=mildly acidic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Rh={{#switch:{{{format|}}} | | Rh={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default=−3<ref> | |complete|complete_no_comment|#default=−3, −1, +1,<ref>{{cite web|url=http://openmopac.net/data_normal/rhfr_jmol.html|title=Rhodium: rhodium(I) fluoride compound data|accessdate=2007-12-10|publisher=OpenMOPAC.net}}</ref> +2, {{resize|1=112%|2='''+3'''}}, +4, +5, +6 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Pd={{#switch:{{{format|}}} | | Pd={{#switch:{{{format|}}} | ||
|main= | |main=+2, +4 | ||
|complete|complete_no_comment|#default= | |complete|complete_no_comment|#default=0, +1, {{resize|1=112%|2='''+2'''}}, +3, {{resize|1=112%|2='''+4'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=mildly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Ag={{#switch:{{{format|}}} | | Ag={{#switch:{{{format|}}} | ||
|main=+1 | |main=+1 | ||
|complete|complete_no_comment|#default=−2, −1, | |complete|complete_no_comment|#default=−2, −1, {{resize|1=112%|2='''+1'''}}, +2, +3 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
Line 255: | Line 255: | ||
| In={{#switch:{{{format|}}} | | In={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default=−5, −2, −1, | |complete|complete_no_comment|#default=−5, −2, −1, +1, +2, {{resize|1=112%|2='''+3'''}}<ref>{{cite journal|doi=10.1021/ic951378e|title=Synthesis, Structure, and Bonding of Two Lanthanum Indium Germanides with Novel Structures and Properties|year=1996|last1=Guloy|first1=A. M.|last2=Corbett|first2=J. D.|journal=Inorganic Chemistry|volume=35|issue=9|pages=2616–22}}</ref> {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Sn={{#switch:{{{format|}}} | | Sn={{#switch:{{{format|}}} | ||
|main=+2, +4 | |main=−4, +2, +4 | ||
|complete|complete_no_comment|#default=−4, −3, −2, −1, | |complete|complete_no_comment|#default={{resize|1=112%|2='''−4'''}}, −3, −2, −1, +1,<ref>{{cite web|title=HSn|url=http://webbook.nist.gov/cgi/cbook.cgi?ID=C13940255&Units=SI|work=NIST Chemistry WebBook|publisher=National Institute of Standards and Technology|accessdate=23 January 2013}}</ref> {{resize|1=112%|2='''+2'''}}, +3,<ref>{{cite web|title=SnH3|url=http://webbook.nist.gov/cgi/cbook.cgi?ID=B1001467&Units=SI|work=NIST Chemistry WebBook|publisher=National Institure of Standards and Technology|accessdate=23 January 2013}}</ref> {{resize|1=112%|2='''+4'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Sb={{#switch:{{{format|}}} | | Sb={{#switch:{{{format|}}} | ||
|main=+3, +5 | |main=−3, +3, +5 | ||
|complete|complete_no_comment|#default= | |complete|complete_no_comment|#default={{resize|1=112%|2='''−3'''}}, −2, −1, +1, +2, {{resize|1=112%|2='''+3'''}}, +4, {{resize|1=112%|2='''+5'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Te={{#switch:{{{format|}}} | | Te={{#switch:{{{format|}}} | ||
|main=−2, +2, +4, +6 | |main=−2, +2, +4, +6 | ||
|complete|complete_no_comment|#default={{resize|1=112%|2='''−2'''}}, −1 | |complete|complete_no_comment|#default={{resize|1=112%|2='''−2'''}}, −1, +1, {{resize|1=112%|2='''+2'''}}, +3, {{resize|1=112%|2='''+4'''}}, +5, {{resize|1=112%|2='''+6'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=mildly acidic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| I={{#switch:{{{format|}}} | | I={{#switch:{{{format|}}} | ||
|main=−1, +1, +3, +5, +7 | |main=−1, +1, +3, +5, +7 | ||
|complete|complete_no_comment|#default={{resize|1=112%|2='''−1'''}} | |complete|complete_no_comment|#default={{resize|1=112%|2='''−1'''}}, {{resize|1=112%|2='''+1'''}}, {{resize|1=112%|2='''+3'''}}, +4, {{resize|1=112%|2='''+5'''}}, +6, {{resize|1=112%|2='''+7'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=strongly acidic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Xe={{#switch:{{{format|}}} | | Xe={{#switch:{{{format|}}} | ||
|main=0 | |main=0 | ||
|complete|complete_no_comment|#default | |complete|complete_no_comment|#default='''0''', +1, +2, +4, +6, +8 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=rarely non-0, weakly acidic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
Line 287: | Line 286: | ||
| Cs={{#switch:{{{format|}}} | | Cs={{#switch:{{{format|}}} | ||
|main=+1 | |main=+1 | ||
|complete|complete_no_comment|#default=−1, {{resize|1=112%|2='''+1'''}}<ref name= | |complete|complete_no_comment|#default=−1, {{resize|1=112%|2='''+1'''}}<ref name=caeside>{{cite journal|journal = [[Angewandte Chemie|Angewandte Chemie International Edition]]|year = 1979|first = J. L.|last = Dye|title = Compounds of Alkali Metal Anions|volume = 18|issue = 8|pages = 587–598|doi = 10.1002/anie.197905871}}</ref> {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=strongly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
Line 297: | Line 296: | ||
| La={{#switch:{{{format|}}} | | La={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce | |complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce, Pm, Eu, Tm, Yb have been observed in the oxidation state 0 in bis(1,3,5-tri-t-butylbenzene) complexes, see {{cite journal |journal=Chem. Soc. Rev. |date=1993 |volume=22 |pages=17–24 |first=F. Geoffrey N. |last=Cloke |title=Zero Oxidation State Compounds of Scandium, Yttrium, and the Lanthanides |doi=10.1039/CS9932200017 }}</ref> +1, +2, {{resize|1=112%|2='''+3'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=strongly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
Line 307: | Line 306: | ||
| Pr={{#switch:{{{format|}}} | | Pr={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce | |complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce, Pm, Eu, Tm, Yb have been observed in the oxidation state 0 in bis(1,3,5-tri-t-butylbenzene) complexes, see {{cite journal |journal=Chem. Soc. Rev. |date=1993 |volume=22 |pages=17–24 |first=F. Geoffrey N. |last=Cloke |title=Zero Oxidation State Compounds of Scandium, Yttrium, and the Lanthanides |doi=10.1039/CS9932200017 }}</ref> +1,<ref>{{cite journal|title=Lanthanides with Unusually Low Oxidation States in the PrB<sup>3–</sup> and PrB<sup>4–</sup> Boride Clusters|journal=Inorganic Chemistry|volume=58|issue=1|pages=411–418|last1=Chen|first1=Xin|display-authors=etal|date=2019-12-13|doi=10.1021/acs.inorgchem.8b02572|pmid=30543295}}</ref> +2, {{resize|1=112%|2='''+3'''}}, +4, +5 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=mildly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Nd={{#switch:{{{format|}}} | | Nd={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce | |complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce, Pm, Eu, Tm, Yb have been observed in the oxidation state 0 in bis(1,3,5-tri-t-butylbenzene) complexes, see {{cite journal |journal=Chem. Soc. Rev. |date=1993 |volume=22 |pages=17–24 |first=F. Geoffrey N. |last=Cloke |title=Zero Oxidation State Compounds of Scandium, Yttrium, and the Lanthanides |doi=10.1039/CS9932200017 }}</ref> +2, {{resize|1=112%|2='''+3'''}}, +4 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=mildly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
Line 322: | Line 321: | ||
| Sm={{#switch:{{{format|}}} | | Sm={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce | |complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce, Pm, Eu, Tm, Yb have been observed in the oxidation state 0 in bis(1,3,5-tri-t-butylbenzene) complexes, see {{cite journal |journal=Chem. Soc. Rev. |date=1993 |volume=22 |pages=17–24 |first=F. Geoffrey N. |last=Cloke |title=Zero Oxidation State Compounds of Scandium, Yttrium, and the Lanthanides |doi=10.1039/CS9932200017 }}</ref> +1, +2, {{resize|1=112%|2='''+3'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=mildly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Eu={{#switch:{{{format|}}} | | Eu={{#switch:{{{format|}}} | ||
|main=+2, +3 | |main=+2, +3 | ||
|complete|complete_no_comment|#default= | |complete|complete_no_comment|#default=+1, {{resize|1=112%|2='''+2'''}}, {{resize|1=112%|2='''+3'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=mildly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Gd={{#switch:{{{format|}}} | | Gd={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce | |complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce, Pm, Eu, Tm, Yb have been observed in the oxidation state 0 in bis(1,3,5-tri-t-butylbenzene) complexes, see {{cite journal |journal=Chem. Soc. Rev. |date=1993 |volume=22 |pages=17–24 |first=F. Geoffrey N. |last=Cloke |title=Zero Oxidation State Compounds of Scandium, Yttrium, and the Lanthanides |doi=10.1039/CS9932200017 }}</ref> +1, +2, {{resize|1=112%|2='''+3'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=mildly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Tb={{#switch:{{{format|}}} | | Tb={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce | |complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce, Pm, Eu, Tm, Yb have been observed in the oxidation state 0 in bis(1,3,5-tri-t-butylbenzene) complexes, see {{cite journal |journal=Chem. Soc. Rev. |date=1993 |volume=22 |pages=17–24 |first=F. Geoffrey N. |last=Cloke |title=Zero Oxidation State Compounds of Scandium, Yttrium, and the Lanthanides |doi=10.1039/CS9932200017 }}</ref> +1, +2, {{resize|1=112%|2='''+3'''}}, +4 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=weakly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Dy={{#switch:{{{format|}}} | | Dy={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce | |complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce, Pm, Eu, Tm, Yb have been observed in the oxidation state 0 in bis(1,3,5-tri-t-butylbenzene) complexes, see {{cite journal |journal=Chem. Soc. Rev. |date=1993 |volume=22 |pages=17–24 |first=F. Geoffrey N. |last=Cloke |title=Zero Oxidation State Compounds of Scandium, Yttrium, and the Lanthanides |doi=10.1039/CS9932200017 }}</ref> +1, +2, {{resize|1=112%|2='''+3'''}}, +4 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=weakly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Ho={{#switch:{{{format|}}} | | Ho={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce | |complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce, Pm, Eu, Tm, Yb have been observed in the oxidation state 0 in bis(1,3,5-tri-t-butylbenzene) complexes, see {{cite journal |journal=Chem. Soc. Rev. |date=1993 |volume=22 |pages=17–24 |first=F. Geoffrey N. |last=Cloke |title=Zero Oxidation State Compounds of Scandium, Yttrium, and the Lanthanides |doi=10.1039/CS9932200017 }}</ref> +1, +2, {{resize|1=112%|2='''+3'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Er={{#switch:{{{format|}}} | | Er={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce | |complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce, Pm, Eu, Tm, Yb have been observed in the oxidation state 0 in bis(1,3,5-tri-t-butylbenzene) complexes, see {{cite journal |journal=Chem. Soc. Rev. |date=1993 |volume=22 |pages=17–24 |first=F. Geoffrey N. |last=Cloke |title=Zero Oxidation State Compounds of Scandium, Yttrium, and the Lanthanides |doi=10.1039/CS9932200017 }}</ref> +1, +2, {{resize|1=112%|2='''+3'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Tm={{#switch:{{{format|}}} | | Tm={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default= | |complete|complete_no_comment|#default=+2, {{resize|1=112%|2='''+3'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Yb={{#switch:{{{format|}}} | | Yb={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default= | |complete|complete_no_comment|#default=+1, +2, {{resize|1=112%|2='''+3'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Lu={{#switch:{{{format|}}} | | Lu={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce | |complete|complete_no_comment|#default=0,<ref name="Cloke1993">Yttrium and all lanthanides except Ce, Pm, Eu, Tm, Yb have been observed in the oxidation state 0 in bis(1,3,5-tri-t-butylbenzene) complexes, see {{cite journal |journal=Chem. Soc. Rev. |date=1993 |volume=22 |pages=17–24 |first=F. Geoffrey N. |last=Cloke |title=Zero Oxidation State Compounds of Scandium, Yttrium, and the Lanthanides |doi=10.1039/CS9932200017 }}</ref> +1, +2, {{resize|1=112%|2='''+3'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=weakly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Hf={{#switch:{{{format|}}} | | Hf={{#switch:{{{format|}}} | ||
|main=+4 | |main=+4 | ||
|complete|complete_no_comment|#default=−2 | |complete|complete_no_comment|#default=−2, +1, +2, +3, {{resize|1=112%|2='''+4'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Ta={{#switch:{{{format|}}} | | Ta={{#switch:{{{format|}}} | ||
|main=+5 | |main=+5 | ||
|complete|complete_no_comment|#default=−3, −1 | |complete|complete_no_comment|#default=−3, −1, +1, +2, +3, +4, {{resize|1=112%|2='''+5'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=mildly acidic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
Line 387: | Line 385: | ||
| Re={{#switch:{{{format|}}} | | Re={{#switch:{{{format|}}} | ||
|main= | |main=+4 | ||
|complete|complete_no_comment|#default=−3, −1, 0, +1, +2, | |complete|complete_no_comment|#default=−3, −1, 0, +1, +2, +3, {{resize|1=112%|2='''+4'''}}, +5, +6, +7 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=mildly acidic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Os={{#switch:{{{format|}}} | | Os={{#switch:{{{format|}}} | ||
|main= | |main=+4 | ||
|complete|complete_no_comment|#default=−4, −2, −1, 0, +1, | |complete|complete_no_comment|#default=−4, −2, −1, 0, +1, +2, +3, {{resize|1=112%|2='''+4'''}}, +5, +6, +7, +8 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=mildly acidic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Ir={{#switch:{{{format|}}} | | Ir={{#switch:{{{format|}}} | ||
|main= | |main=+3, +4 | ||
|complete|complete_no_comment|#default=−3 | |complete|complete_no_comment|#default=−3, −1, 0, +1, +2, {{resize|1=112%|2='''+3'''}}, {{resize|1=112%|2='''+4'''}}, +5, +6, +7, +8, +9<ref name=IrIX>{{cite journal |last=Wang |first=Guanjun |last2=Zhou |first2=Mingfei |last3=Goettel |first3=James T. |last4=Schrobilgen |first4=Gary G. |last5=Su |first5=Jing |last6=Li |first6=Jun |last7=Schlöder |first7=Tobias |last8=Riedel |first8=Sebastian |date=2014 |title=Identification of an iridium-containing compound with a formal oxidation state of IX |journal=Nature |volume=514 |issue=7523 |pages=475–477 |doi=10.1038/nature13795 |pmid=25341786|bibcode=2014Natur.514..475W }}</ref> | ||
}} | }} | ||
| Pt={{#switch:{{{format|}}} | | Pt={{#switch:{{{format|}}} | ||
|main=+2, +4 | |main=+2, +4 | ||
|complete|complete_no_comment|#default=−3, −2, −1 | |complete|complete_no_comment|#default=−3, −2, −1, +1, {{resize|1=112%|2='''+2'''}}, +3, {{resize|1=112%|2='''+4'''}}, +5, +6 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=mildly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Au={{#switch:{{{format|}}} | | Au={{#switch:{{{format|}}} | ||
|main=+1, +3 | |main=+1, +3 | ||
|complete|complete_no_comment|#default=−3, −2, [[Caesium auride|−1]], | |complete|complete_no_comment|#default=−3, −2, [[Caesium auride|−1]], {{resize|1=112%|2='''+1'''}}, +2, {{resize|1=112%|2='''+3'''}}, [[Gold pentafluoride|+5]] {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Hg={{#switch:{{{format|}}} | | Hg={{#switch:{{{format|}}} | ||
|main= | |main=+2 | ||
|complete|complete_no_comment|#default=−2 , | |complete|complete_no_comment|#default=−2 , +1 (mercurous), {{resize|1=112%|2='''+2'''}} (mercuric){{#ifeq:{{{format|complete}}}|complete_no_comment|| {{Infobox element/symbol-to-oxidation-state/comment|comment=mildly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Tl={{#switch:{{{format|}}} | | Tl={{#switch:{{{format|}}} | ||
|main=+1, +3 | |main=+1, +3 | ||
|complete|complete_no_comment|#default=−5,<ref>{{cite journal|doi=10.1021/ic960014z|title=Na<sub>23</sub>K<sub>9</sub>Tl<sub>15.3</sub>: An Unusual Zintl Compound Containing Apparent Tl<sub>5</sub><sup>7−</sup>, Tl<sub>4</sub><sup>8−</sup>, Tl<sub>3</sub><sup>7−</sup>, and Tl<sup>5−</sup> Anions|year=1996|last1=Dong|first1=Z.-C.|last2=Corbett|first2=J. D.|journal=Inorganic Chemistry|volume=35|issue=11|pages=3107–12 | |complete|complete_no_comment|#default=−5,<ref>{{cite journal|doi=10.1021/ic960014z|title=Na<sub>23</sub>K<sub>9</sub>Tl<sub>15.3</sub>: An Unusual Zintl Compound Containing Apparent Tl<sub>5</sub><sup>7−</sup>, Tl<sub>4</sub><sup>8−</sup>, Tl<sub>3</sub><sup>7−</sup>, and Tl<sup>5−</sup> Anions|year=1996|last1=Dong|first1=Z.-C.|last2=Corbett|first2=J. D.|journal=Inorganic Chemistry|volume=35|issue=11|pages=3107–12}}</ref><!-- is about a Tl 7- then? --> −2, −1, {{resize|1=112%|2='''+1'''}}, +2, {{resize|1=112%|2='''+3'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=mildly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Pb={{#switch:{{{format|}}} | | Pb={{#switch:{{{format|}}} | ||
|main=+2, +4 | |main=+2, +4 | ||
|complete|complete_no_comment|#default=−4, −2, −1, | |complete|complete_no_comment|#default=−4, −2, −1, +1, {{resize|1=112%|2='''+2'''}}, +3, {{resize|1=112%|2='''+4'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Bi={{#switch:{{{format|}}} | | Bi={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default=−3, −2, −1, | |complete|complete_no_comment|#default=−3, −2, −1, +1, +2, {{resize|1=112%|2='''+3'''}}, +4, +5 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=mildly acidic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Po={{#switch:{{{format|}}} | | Po={{#switch:{{{format|}}} | ||
|main=−2, +2, +4 | |main=−2, +2, +4 | ||
|complete|complete_no_comment|#default='''[[Polonide|−2]]''', {{resize|1=112%|2='''+2'''}}, {{resize|1=112%|2='''+4'''}}, +5,<ref name="Thayer p78">{{cite journal |last1=Thayer |first1=John S. |journal=Relativistic Methods for Chemists |title=Relativistic Effects and the Chemistry of the Heavier Main Group Elements | |complete|complete_no_comment|#default='''[[Polonide|−2]]''', {{resize|1=112%|2='''+2'''}}, {{resize|1=112%|2='''+4'''}}, +5,<ref name="Thayer p78">{{cite journal |last1=Thayer |first1=John S. |journal=Relativistic Methods for Chemists |title=Relativistic Effects and the Chemistry of the Heavier Main Group Elements |year=2010 |page=78 |doi=10.1007/978-1-4020-9975-5_2|isbn=978-1-4020-9974-8 }}</ref> +6 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
Line 444: | Line 441: | ||
| Rn={{#switch:{{{format|}}} | | Rn={{#switch:{{{format|}}} | ||
|main=0 | |main=0 | ||
|complete|complete_no_comment|#default | |complete|complete_no_comment|#default='''0''', +2, +6 | ||
}} | }} | ||
Line 450: | Line 447: | ||
| Fr={{#switch:{{{format|}}} | | Fr={{#switch:{{{format|}}} | ||
|main=+1 | |main=+1 | ||
|complete|complete_no_comment|#default={{resize|1=112%|2='''+1'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=strongly basic | |complete|complete_no_comment|#default={{resize|1=112%|2='''+1'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=strongly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
Line 460: | Line 457: | ||
| Ac={{#switch:{{{format|}}} | | Ac={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default={{resize|1=112%|2='''+3'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=strongly basic|engvar={{{engvar|}}}}}}} | |complete|complete_no_comment|#default=+2, {{resize|1=112%|2='''+3'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=strongly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Th={{#switch:{{{format|}}} | | Th={{#switch:{{{format|}}} | ||
|main=+4 | |main=+4 | ||
|complete|complete_no_comment|#default= | |complete|complete_no_comment|#default=+1, +2, +3, {{resize|1=112%|2='''+4'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=weakly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
Line 476: | Line 471: | ||
| U={{#switch:{{{format|}}} | | U={{#switch:{{{format|}}} | ||
|main= | |main=+6 | ||
|complete|complete_no_comment|#default= | |complete|complete_no_comment|#default=+1, +2, +3,<ref>{{cite book|title=The Chemistry of the Actinide and Transactinide Elements|edition=3rd|editor1=Morss, L.R. |editor2=Edelstein, N.M. |editor3=Fuger, J. |place=Netherlands|publisher=Springer|year=2006|isbn=978-9048131464}}</ref> +4, +5, {{resize|1=112%|2='''+6'''}} {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=weakly basic|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Np={{#switch:{{{format|}}} | | Np={{#switch:{{{format|}}} | ||
|main=+5 | |main=+5 | ||
|complete|complete_no_comment|#default=+2, +3, +4, | |complete|complete_no_comment|#default=+1, +2, +3, +4, {{resize|1=112%|2='''+5'''}}, +6, +7 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Pu={{#switch:{{{format|}}} | | Pu={{#switch:{{{format|}}} | ||
|main=+4 | |main=+4 | ||
|complete|complete_no_comment|#default=+2, +3, {{resize|1=112%|2='''+4'''}}, +5, +6, +7 | |complete|complete_no_comment|#default=+1, +2, +3, {{resize|1=112%|2='''+4'''}}, +5, +6, +7 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
Line 499: | Line 492: | ||
| Cm={{#switch:{{{format|}}} | | Cm={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default={{resize|1=112%|2='''+3'''}}, +4, +5,<ref name="Kovács2018">{{cite journal |last1=Kovács |first1=Attila |last2=Dau |first2=Phuong D. |last3=Marçalo |first3=Joaquim |last4=Gibson |first4=John K. |date=2018 |title=Pentavalent Curium, Berkelium, and Californium in Nitrate Complexes: Extending Actinide Chemistry and Oxidation States |journal=Inorg. Chem. |volume=57 |issue=15 |pages=9453–9467 |publisher=American Chemical Society |doi=10.1021/acs.inorgchem.8b01450 |pmid=30040397 | |complete|complete_no_comment|#default=+2, {{resize|1=112%|2='''+3'''}}, +4, +5,<ref name="Kovács2018">{{cite journal |last1=Kovács |first1=Attila |last2=Dau |first2=Phuong D. |last3=Marçalo |first3=Joaquim |last4=Gibson |first4=John K. |date=2018 |title=Pentavalent Curium, Berkelium, and Californium in Nitrate Complexes: Extending Actinide Chemistry and Oxidation States |journal=Inorg. Chem. |volume=57 |issue=15 |pages=9453–9467 |publisher=American Chemical Society |doi=10.1021/acs.inorgchem.8b01450 |pmid=30040397 }}</ref> +6<ref name="CmO3">{{cite journal |last1=Domanov |first1=V. P. |last2=Lobanov |first2=Yu. V. |date=October 2011 |title=Formation of volatile curium(VI) trioxide CmO<sub>3</sub> |journal=Radiochemistry |volume=53 |issue=5 |pages=453–6 |publisher=SP MAIK Nauka/Interperiodica |doi=10.1134/S1066362211050018}}</ref> {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=amphoteric|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Bk={{#switch:{{{format|}}} | | Bk={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default=+2, {{resize|1=112%|2='''+3'''}}, +4, +5<ref name="Kovács2018">{{cite journal |last1=Kovács |first1=Attila |last2=Dau |first2=Phuong D. |last3=Marçalo |first3=Joaquim |last4=Gibson |first4=John K. |date=2018 |title=Pentavalent Curium, Berkelium, and Californium in Nitrate Complexes: Extending Actinide Chemistry and Oxidation States |journal=Inorg. Chem. |volume=57 |issue=15 |pages=9453–9467 |publisher=American Chemical Society |doi=10.1021/acs.inorgchem.8b01450 |pmid=30040397 | |complete|complete_no_comment|#default=+2, {{resize|1=112%|2='''+3'''}}, +4, +5<ref name="Kovács2018">{{cite journal |last1=Kovács |first1=Attila |last2=Dau |first2=Phuong D. |last3=Marçalo |first3=Joaquim |last4=Gibson |first4=John K. |date=2018 |title=Pentavalent Curium, Berkelium, and Californium in Nitrate Complexes: Extending Actinide Chemistry and Oxidation States |journal=Inorg. Chem. |volume=57 |issue=15 |pages=9453–9467 |publisher=American Chemical Society |doi=10.1021/acs.inorgchem.8b01450 |pmid=30040397 }}</ref> | ||
}} | }} | ||
| Cf={{#switch:{{{format|}}} | | Cf={{#switch:{{{format|}}} | ||
|main=+3 | |main=+3 | ||
|complete|complete_no_comment|#default=+2, {{resize|1=112%|2='''+3'''}}, +4, +5 | |complete|complete_no_comment|#default=+2, {{resize|1=112%|2='''+3'''}}, +4, +5{{sfn|Greenwood|Earnshaw|1997|p=1265}}<ref name="Kovács2018">{{cite journal |last1=Kovács |first1=Attila |last2=Dau |first2=Phuong D. |last3=Marçalo |first3=Joaquim |last4=Gibson |first4=John K. |date=2018 |title=Pentavalent Curium, Berkelium, and Californium in Nitrate Complexes: Extending Actinide Chemistry and Oxidation States |journal=Inorg. Chem. |volume=57 |issue=15 |pages=9453–9467 |publisher=American Chemical Society |doi=10.1021/acs.inorgchem.8b01450 |pmid=30040397 }}</ref> | ||
}} | }} | ||
Line 539: | Line 532: | ||
| Rf={{#switch:{{{format|}}} | | Rf={{#switch:{{{format|}}} | ||
|main=(+3), +4 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=parenthesized|engvar={{{engvar|}}}}}}} | |main=(+3), +4 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=parenthesized|engvar={{{engvar|}}}}}}} | ||
|complete|complete_no_comment|#default=(+2), ({{resize|1=112%|2='''+3'''}}), {{resize|1=112%|2='''+4'''}}<ref name="rsc-Rf">{{cite web|url=http://www.rsc.org/periodic-table/element/104/rutherfordium |title=Rutherfordium |publisher=Royal Chemical Society | | |complete|complete_no_comment|#default=(+2), ({{resize|1=112%|2='''+3'''}}), {{resize|1=112%|2='''+4'''}}<ref name="rsc-Rf">{{cite web|url=http://www.rsc.org/periodic-table/element/104/rutherfordium |title=Rutherfordium |publisher=Royal Chemical Society |accessdate=2019-09-21}}</ref><ref name=Haire/><ref name=BFricke/> {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=parenthesized|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Db={{#switch:{{{format|}}} | | Db={{#switch:{{{format|}}} | ||
|main=+5 | |main=+5 | ||
|complete|complete_no_comment|#default=(+3), (+4), {{resize|1=112%|2='''+5'''}}<ref name=Haire/> | |complete|complete_no_comment|#default=(+3), (+4), {{resize|1=112%|2='''+5'''}}<ref name=Haire/><ref name=BFricke/> {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=parenthesized|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Sg={{#switch:{{{format|}}} | | Sg={{#switch:{{{format|}}} | ||
|main=(+4), +6 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=parenthesized|engvar={{{engvar|}}}}}}} | |main=(+4), +6 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=parenthesized|engvar={{{engvar|}}}}}}} | ||
|complete|complete_no_comment|#default=0, (+3), ({{resize|1=112%|2='''+4'''}}), (+5), {{resize|1=112%|2='''+6'''}}<ref name=Haire/> | |complete|complete_no_comment|#default=0, (+3), ({{resize|1=112%|2='''+4'''}}), (+5), {{resize|1=112%|2='''+6'''}}<ref name=Haire/><ref name=BFricke/> {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=parenthesized|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Bh={{#switch:{{{format|}}} | | Bh={{#switch:{{{format|}}} | ||
|main=(+3), (+4), (+5), +7 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=parenthesized|engvar={{{engvar|}}}}}}} | |main=(+3), (+4), (+5), +7 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=parenthesized|engvar={{{engvar|}}}}}}} | ||
|complete|complete_no_comment|#default=({{resize|1=112%|2='''+3'''}}), ({{resize|1=112%|2='''+4'''}}), ({{resize|1=112%|2='''+5'''}}), {{resize|1=112%|2='''+7'''}}<ref name=Haire/> | |complete|complete_no_comment|#default=({{resize|1=112%|2='''+3'''}}), ({{resize|1=112%|2='''+4'''}}), ({{resize|1=112%|2='''+5'''}}), {{resize|1=112%|2='''+7'''}}<ref name=Haire/><ref name=BFricke/> {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=parenthesized|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Hs={{#switch:{{{format|}}} | | Hs={{#switch:{{{format|}}} | ||
|main=(+ | |main=(+2), (+4), (+6), +8 {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=parenthesized|engvar={{{engvar|}}}}}}} | ||
|complete|complete_no_comment|#default= | |complete|complete_no_comment|#default=({{resize|1=112%|2='''+2'''}}), (+3), ({{resize|1=112%|2='''+4'''}}), (+5), ({{resize|1=112%|2='''+6'''}}), {{resize|1=112%|2='''+8'''}}<ref name=Haire/><!-- this Emsley2011: literal copy from Infobox Hs: --><ref name="Emsley2011">{{cite book|last=Emsley|first=John|title=Nature's Building Blocks: An A-Z Guide to the Elements|edition=New|year=2011|publisher=Oxford University Press|location=New York, NY|isbn=978-0-19-960563-7|page=215–7}}</ref><ref name=BFricke>{{cite journal |last1=Fricke |first1=Burkhard |year=1975 |title=Superheavy elements: a prediction of their chemical and physical properties |journal=Recent Impact of Physics on Inorganic Chemistry |volume=21 |pages=89–144 |doi=10.1007/BFb0116498 |url=https://www.researchgate.net/publication/225672062 |accessdate=4 October 2013|series=Structure and Bonding |isbn=978-3-540-07109-9 }}</ref><ref name="hassocene">{{cite web |url=http://www-win.gsi.de/tasca08/contributions/TASCA08_Cont_Duellmann1.pdf |title=Investigation of group 8 metallocenes @ TASCA |last1=Düllmann |first1=Christoph E. |date=31 October 2008 |work=7th Workshop on Recoil Separator for Superheavy Element Chemistry TASCA 08 |publisher=[[Gesellschaft für Schwerionenforschung]] |accessdate=25 March 2013}}</ref> {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=parenthesized|engvar={{{engvar|}}}}}}} | ||
}} | }} | ||
| Mt={{#switch:{{{format|}}} | | Mt={{#switch:{{{format|}}} | ||
|main=(+1), (+3), (+6){{#ifeq:{{{format|complete}}}|complete_no_comment|| {{Infobox element/symbol-to-oxidation-state/comment|comment=predicted|engvar={{{engvar|}}}}}}} | |main=(+1), (+3), (+6){{#ifeq:{{{format|complete}}}|complete_no_comment|| {{Infobox element/symbol-to-oxidation-state/comment|comment=predicted|engvar={{{engvar|}}}}}}} | ||
|complete|complete_no_comment|#default=({{resize|1=112%|2='''+1'''}}), ({{resize|1=112%|2='''+3'''}}), (+4), ({{resize|1=112%|2='''+6'''}}), (+8), (+9){{#ifeq:{{{format|complete}}}|complete_no_comment|| {{Infobox element/symbol-to-oxidation-state/comment|comment=predicted|engvar={{{engvar|}}}}}}}<ref name=Haire>{{cite book| title=The Chemistry of the Actinide and Transactinide Elements| editor1-last=Morss| editor2-first=Norman M.| editor2-last=Edelstein| editor3-last=Fuger| editor3-first=Jean| last1=Hoffman| first1=Darleane C.| last2=Lee| first2=Diana M.| last3=Pershina| first3=Valeria| chapter=Transactinides and the future elements| publisher=[[Springer Science+Business Media]]| year=2006| isbn=978-1-4020-3555-5| location=Dordrecht, The Netherlands| edition=3rd| ref=CITEREFHaire2006}}</ref><ref name="MtX4">{{cite journal|doi=10.1023/B:RUCO.0000026006.39497.82|title=Halides of Tetravalent Transactinides (Rf, Db, Sg, Bh, Hs, Mt, 110th Element): Physicochemical Properties|year=2004|last1=Ionova|first1=G. V.|last2=Ionova|first2=I. S.|last3=Mikhalko|first3=V. K.|last4=Gerasimova|first4=G. A.|last5=Kostrubov|first5=Yu. N.|last6=Suraeva|first6=N. I.|journal=Russian Journal of Coordination Chemistry|volume=30|issue=5|pages=352 | |complete|complete_no_comment|#default=({{resize|1=112%|2='''+1'''}}), ({{resize|1=112%|2='''+3'''}}), (+4), ({{resize|1=112%|2='''+6'''}}), (+8), (+9){{#ifeq:{{{format|complete}}}|complete_no_comment|| {{Infobox element/symbol-to-oxidation-state/comment|comment=predicted|engvar={{{engvar|}}}}}}}<ref name=Haire>{{cite book| title=The Chemistry of the Actinide and Transactinide Elements| editor1-last=Morss| editor2-first=Norman M.| editor2-last=Edelstein| editor3-last=Fuger| editor3-first=Jean| last1=Hoffman| first1=Darleane C.| last2=Lee| first2=Diana M.| last3=Pershina| first3=Valeria| chapter=Transactinides and the future elements| publisher=[[Springer Science+Business Media]]| year=2006| isbn=978-1-4020-3555-5| location=Dordrecht, The Netherlands| edition=3rd| ref=CITEREFHaire2006}}</ref><ref name="MtX4">{{cite journal|doi=10.1023/B:RUCO.0000026006.39497.82|title=Halides of Tetravalent Transactinides (Rf, Db, Sg, Bh, Hs, Mt, 110th Element): Physicochemical Properties|year=2004|last1=Ionova|first1=G. V.|last2=Ionova|first2=I. S.|last3=Mikhalko|first3=V. K.|last4=Gerasimova|first4=G. A.|last5=Kostrubov|first5=Yu. N.|last6=Suraeva|first6=N. I.|journal=Russian Journal of Coordination Chemistry|volume=30|issue=5|pages=352}}</ref><ref name="Mt(IX)">{{cite journal|doi=10.1002/cphc.200900910|title=How Far Can We Go? Quantum-Chemical Investigations of Oxidation State +IX|year=2010|last1=Himmel|first1=Daniel|last2=Knapp|first2=Carsten|last3=Patzschke|first3=Michael|last4=Riedel|first4=Sebastian|journal=ChemPhysChem|volume=11|issue=4|pages=865–9|pmid=20127784}}</ref><ref name=BFricke/> | ||
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|complete|complete_no_comment|#default=(−1), ({{resize|1=112%|2='''+1'''}}), ({{resize|1=112%|2='''+3'''}}), (+5){{#ifeq:{{{format|complete}}}|complete_no_comment|| {{Infobox element/symbol-to-oxidation-state/comment|comment=predicted|engvar={{{engvar|}}}}}}}<ref name=Haire>{{cite book| title=The Chemistry of the Actinide and Transactinide Elements| editor1-last=Morss| editor2-first=Norman M.| editor2-last=Edelstein| editor3-last=Fuger| editor3-first=Jean| last1=Hoffman| first1=Darleane C.| last2=Lee| first2=Diana M.| last3=Pershina| first3=Valeria| chapter=Transactinides and the future elements| publisher=[[Springer Science+Business Media]]| year=2006| isbn=978-1-4020-3555-5| location=Dordrecht, The Netherlands| edition=3rd| ref=CITEREFHaire2006}}</ref> | |complete|complete_no_comment|#default=(−1), ({{resize|1=112%|2='''+1'''}}), ({{resize|1=112%|2='''+3'''}}), (+5){{#ifeq:{{{format|complete}}}|complete_no_comment|| {{Infobox element/symbol-to-oxidation-state/comment|comment=predicted|engvar={{{engvar|}}}}}}}<ref name=Haire>{{cite book| title=The Chemistry of the Actinide and Transactinide Elements| editor1-last=Morss| editor2-first=Norman M.| editor2-last=Edelstein| editor3-last=Fuger| editor3-first=Jean| last1=Hoffman| first1=Darleane C.| last2=Lee| first2=Diana M.| last3=Pershina| first3=Valeria| chapter=Transactinides and the future elements| publisher=[[Springer Science+Business Media]]| year=2006| isbn=978-1-4020-3555-5| location=Dordrecht, The Netherlands| edition=3rd| ref=CITEREFHaire2006}}</ref><ref name=BFricke/><ref name="Thayer pp63-67">{{cite book |last1=Thayer |first1=John S. |editor-first1=Maria |editor-last1=Barysz |editor-first2=Yasuyuki |editor-last2=Ishikawa |title=Relativistic Methods for Chemists |date=2010 |pages=63–67 |doi=10.1007/978-1-4020-9975-5_2 |chapter=Relativistic Effects and the Chemistry of the Heavier Main Group Elements |publisher=Springer |isbn=978-1-4020-9974-8}}</ref> | ||
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|complete|complete_no_comment|#default=(−1),<ref name=Haire/> (0), (+1),<ref name=hydride>{{cite journal|journal=Journal of Chemical Physics|volume=112|issue=6|year=2000|title=Spin–orbit effects on the transactinide p-block element monohydrides MH (M=element 113–118)|first1=Young-Kyu |last1=Han|first2=Cheolbeom |last2=Bae|first3=Sang-Kil |last3=Son|first4=Yoon Sup |last4=Lee|doi=10.1063/1.480842|page=2684|bibcode=2000JChPh.112.2684H}}</ref> ({{resize|1=112%|2='''+2'''}}),<ref name=Kaldor/> ({{resize|1=112%|2='''+4'''}}),<ref name=Kaldor>{{cite book|title=Theoretical Chemistry and Physics of Heavy and Superheavy Elements|first1=Uzi |last1=Kaldor |first2=Stephen|last2=Wilson|page=105|year=2003|publisher=Springer|isbn=978-1402013713|url=https://books.google.com/books?id=0xcAM5BzS-wC& | |complete|complete_no_comment|#default=(−1),<ref name=Haire/> (0), (+1),<ref name=hydride>{{cite journal|journal=Journal of Chemical Physics|volume=112|issue=6|year=2000|title=Spin–orbit effects on the transactinide p-block element monohydrides MH (M=element 113–118)|first1=Young-Kyu |last1=Han|first2=Cheolbeom |last2=Bae|first3=Sang-Kil |last3=Son|first4=Yoon Sup |last4=Lee|doi=10.1063/1.480842|page=2684|bibcode=2000JChPh.112.2684H}}</ref> ({{resize|1=112%|2='''+2'''}}),<ref name=Kaldor/> ({{resize|1=112%|2='''+4'''}}),<ref name=Kaldor>{{cite book|title=Theoretical Chemistry and Physics of Heavy and Superheavy Elements|first1=Uzi |last1=Kaldor |first2=Stephen|last2=Wilson|page=105|year=2003|publisher=Springer|isbn=978-1402013713|url=https://books.google.com/books?id=0xcAM5BzS-wC&printsec=frontcover&dq=element+118+properties#PPA105,M1|accessdate=2008-01-18}}</ref> (+6)<ref name=Haire>{{cite book| title=The Chemistry of the Actinide and Transactinide Elements| editor1-last=Morss| editor2-first=Norman M.| editor2-last=Edelstein| editor3-last=Fuger| editor3-first=Jean| last1=Hoffman| first1=Darleane C.| last2=Lee| first2=Diana M.| last3=Pershina| first3=Valeria| chapter=Transactinides and the future elements| publisher=[[Springer Science+Business Media]]| year=2006| isbn=978-1-4020-3555-5| location=Dordrecht, The Netherlands| edition=3rd| ref=CITEREFHaire2006}}</ref> {{#ifeq:{{{format|complete}}}|complete_no_comment||{{Infobox element/symbol-to-oxidation-state/comment|comment=predicted|engvar={{{engvar|}}}}}}} | ||
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|complete|complete_no_comment|#default=(+1),<ref name=Thayer>{{cite journal |last1=Thayer |first1=John S. |journal=Relativistic Methods for Chemists |title=Relativistic Effects and the Chemistry of the Heavier Main Group Elements | |complete|complete_no_comment|#default=(+1),<ref name=Thayer>{{cite journal |last1=Thayer |first1=John S. |journal=Relativistic Methods for Chemists |title=Relativistic Effects and the Chemistry of the Heavier Main Group Elements |year=2010 |page=84 |doi=10.1007/978-1-4020-9975-5_2|isbn=978-1-4020-9974-8 }}</ref> ({{resize|1=112%|2='''+2'''}}), (+4){{#ifeq:{{{format|complete}}}|complete_no_comment|| {{Infobox element/symbol-to-oxidation-state/comment|comment=predicted|engvar={{{engvar|}}}}}}}<ref name=Haire>{{cite book| title=The Chemistry of the Actinide and Transactinide Elements| editor1-last=Morss| editor2-first=Norman M.| editor2-last=Edelstein| editor3-last=Fuger| editor3-first=Jean| last1=Hoffman| first1=Darleane C.| last2=Lee| first2=Diana M.| last3=Pershina| first3=Valeria| chapter=Transactinides and the future elements| publisher=[[Springer Science+Business Media]]| year=2006| isbn=978-1-4020-3555-5| location=Dordrecht, The Netherlands| edition=3rd| ref=CITEREFHaire2006}}</ref> | ||
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|complete|complete_no_comment|#default=(+1), ({{resize|1=112%|2='''+3'''}}){{#ifeq:{{{format|complete}}}|complete_no_comment|| {{Infobox element/symbol-to-oxidation-state/comment|comment=predicted|engvar={{{engvar|}}}}}}}<ref name=Haire>{{cite book| title=The Chemistry of the Actinide and Transactinide Elements| editor1-last=Morss| editor2-first=Norman M.| editor2-last=Edelstein| editor3-last=Fuger| editor3-first=Jean| last1=Hoffman| first1=Darleane C.| last2=Lee| first2=Diana M.| last3=Pershina| first3=Valeria| chapter=Transactinides and the future elements| publisher=[[Springer Science+Business Media]]| year=2006| isbn=978-1-4020-3555-5| location=Dordrecht, The Netherlands| edition=3rd| ref=CITEREFHaire2006}}</ref><ref name=Amador>{{cite journal |last1=Amador |first1=Davi H. T. |last2=de Oliveira |first2=Heibbe C. B. |first3=Julio R. |last3=Sambrano |first4=Ricardo |last4=Gargano |first5=Luiz Guilherme M. |last5=de Macedo |date=12 September 2016 |title=4-Component correlated all-electron study on Eka-actinium Fluoride (E121F) including Gaunt interaction: Accurate analytical form, bonding and influence on rovibrational spectra |journal=Chemical Physics Letters |volume=662 |pages=169–175 |doi=10.1016/j.cplett.2016.09.025|bibcode=2016CPL...662..169A | |complete|complete_no_comment|#default=(+1), ({{resize|1=112%|2='''+3'''}}){{#ifeq:{{{format|complete}}}|complete_no_comment|| {{Infobox element/symbol-to-oxidation-state/comment|comment=predicted|engvar={{{engvar|}}}}}}}<ref name=Haire>{{cite book| title=The Chemistry of the Actinide and Transactinide Elements| editor1-last=Morss| editor2-first=Norman M.| editor2-last=Edelstein| editor3-last=Fuger| editor3-first=Jean| last1=Hoffman| first1=Darleane C.| last2=Lee| first2=Diana M.| last3=Pershina| first3=Valeria| chapter=Transactinides and the future elements| publisher=[[Springer Science+Business Media]]| year=2006| isbn=978-1-4020-3555-5| location=Dordrecht, The Netherlands| edition=3rd| ref=CITEREFHaire2006}}</ref><ref name=Amador>{{cite journal |last1=Amador |first1=Davi H. T. |last2=de Oliveira |first2=Heibbe C. B. |first3=Julio R. |last3=Sambrano |first4=Ricardo |last4=Gargano |first5=Luiz Guilherme M. |last5=de Macedo |date=12 September 2016 |title=4-Component correlated all-electron study on Eka-actinium Fluoride (E121F) including Gaunt interaction: Accurate analytical form, bonding and influence on rovibrational spectra |journal=Chemical Physics Letters |volume=662 |pages=169–175 |doi=10.1016/j.cplett.2016.09.025|bibcode=2016CPL...662..169A }}</ref> | ||
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