Uranium(III)-carbon multiple bonding supported by arene δ-bonding in mixed-valence hexauranium nanometre-scale rings

Owing to the propensity for uranium(III) compounds to undergo disproportionation, uranium-element multiple bonds involving uranium(III) oxidation states remain rare. Here the authors report hexauranium-methanediide rings that formally contain uranium(III)- and uranium(IV)-methanediides supported by...

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Autores principales: Ashley J. Wooles, David P. Mills, Floriana Tuna, Eric J. L. McInnes, Gareth T. W. Law, Adam J. Fuller, Felipe Kremer, Mark Ridgway, William Lewis, Laura Gagliardi, Bess Vlaisavljevich, Stephen T. Liddle
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Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/6d5b982b9054495bbc0c7c6c9cd21250
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spelling oai:doaj.org-article:6d5b982b9054495bbc0c7c6c9cd212502021-12-02T14:40:08ZUranium(III)-carbon multiple bonding supported by arene δ-bonding in mixed-valence hexauranium nanometre-scale rings10.1038/s41467-018-04560-72041-1723https://doaj.org/article/6d5b982b9054495bbc0c7c6c9cd212502018-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-04560-7https://doaj.org/toc/2041-1723Owing to the propensity for uranium(III) compounds to undergo disproportionation, uranium-element multiple bonds involving uranium(III) oxidation states remain rare. Here the authors report hexauranium-methanediide rings that formally contain uranium(III)- and uranium(IV)-methanediides supported by alternating halide and arene bridges.Ashley J. WoolesDavid P. MillsFloriana TunaEric J. L. McInnesGareth T. W. LawAdam J. FullerFelipe KremerMark RidgwayWilliam LewisLaura GagliardiBess VlaisavljevichStephen T. LiddleNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-11 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ashley J. Wooles
David P. Mills
Floriana Tuna
Eric J. L. McInnes
Gareth T. W. Law
Adam J. Fuller
Felipe Kremer
Mark Ridgway
William Lewis
Laura Gagliardi
Bess Vlaisavljevich
Stephen T. Liddle
Uranium(III)-carbon multiple bonding supported by arene δ-bonding in mixed-valence hexauranium nanometre-scale rings
description Owing to the propensity for uranium(III) compounds to undergo disproportionation, uranium-element multiple bonds involving uranium(III) oxidation states remain rare. Here the authors report hexauranium-methanediide rings that formally contain uranium(III)- and uranium(IV)-methanediides supported by alternating halide and arene bridges.
format article
author Ashley J. Wooles
David P. Mills
Floriana Tuna
Eric J. L. McInnes
Gareth T. W. Law
Adam J. Fuller
Felipe Kremer
Mark Ridgway
William Lewis
Laura Gagliardi
Bess Vlaisavljevich
Stephen T. Liddle
author_facet Ashley J. Wooles
David P. Mills
Floriana Tuna
Eric J. L. McInnes
Gareth T. W. Law
Adam J. Fuller
Felipe Kremer
Mark Ridgway
William Lewis
Laura Gagliardi
Bess Vlaisavljevich
Stephen T. Liddle
author_sort Ashley J. Wooles
title Uranium(III)-carbon multiple bonding supported by arene δ-bonding in mixed-valence hexauranium nanometre-scale rings
title_short Uranium(III)-carbon multiple bonding supported by arene δ-bonding in mixed-valence hexauranium nanometre-scale rings
title_full Uranium(III)-carbon multiple bonding supported by arene δ-bonding in mixed-valence hexauranium nanometre-scale rings
title_fullStr Uranium(III)-carbon multiple bonding supported by arene δ-bonding in mixed-valence hexauranium nanometre-scale rings
title_full_unstemmed Uranium(III)-carbon multiple bonding supported by arene δ-bonding in mixed-valence hexauranium nanometre-scale rings
title_sort uranium(iii)-carbon multiple bonding supported by arene δ-bonding in mixed-valence hexauranium nanometre-scale rings
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/6d5b982b9054495bbc0c7c6c9cd21250
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