Intermediate honeycomb ordering to trigger oxygen redox chemistry in layered battery electrode

Sodium-excess metal oxides Na2MO3 are appealing cathode materials for sodium-ion batteries. Here, the authors demonstrate that honeycomb-type cation ordering in Na2RuO3 triggers the oxygen redox reaction via frontier orbital reorganization, increasing the capacity by 1/3 compared with disordered Na2...

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Autores principales: Benoit Mortemard de Boisse, Guandong Liu, Jiangtao Ma, Shin-ichi Nishimura, Sai-Cheong Chung, Hisao Kiuchi, Yoshihisa Harada, Jun Kikkawa, Yoshio Kobayashi, Masashi Okubo, Atsuo Yamada
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/4af1ca0a992f4af684194600d66b97f4
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spelling oai:doaj.org-article:4af1ca0a992f4af684194600d66b97f42021-12-02T15:35:22ZIntermediate honeycomb ordering to trigger oxygen redox chemistry in layered battery electrode10.1038/ncomms113972041-1723https://doaj.org/article/4af1ca0a992f4af684194600d66b97f42016-04-01T00:00:00Zhttps://doi.org/10.1038/ncomms11397https://doaj.org/toc/2041-1723Sodium-excess metal oxides Na2MO3 are appealing cathode materials for sodium-ion batteries. Here, the authors demonstrate that honeycomb-type cation ordering in Na2RuO3 triggers the oxygen redox reaction via frontier orbital reorganization, increasing the capacity by 1/3 compared with disordered Na2RuO3.Benoit Mortemard de BoisseGuandong LiuJiangtao MaShin-ichi NishimuraSai-Cheong ChungHisao KiuchiYoshihisa HaradaJun KikkawaYoshio KobayashiMasashi OkuboAtsuo YamadaNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-9 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Benoit Mortemard de Boisse
Guandong Liu
Jiangtao Ma
Shin-ichi Nishimura
Sai-Cheong Chung
Hisao Kiuchi
Yoshihisa Harada
Jun Kikkawa
Yoshio Kobayashi
Masashi Okubo
Atsuo Yamada
Intermediate honeycomb ordering to trigger oxygen redox chemistry in layered battery electrode
description Sodium-excess metal oxides Na2MO3 are appealing cathode materials for sodium-ion batteries. Here, the authors demonstrate that honeycomb-type cation ordering in Na2RuO3 triggers the oxygen redox reaction via frontier orbital reorganization, increasing the capacity by 1/3 compared with disordered Na2RuO3.
format article
author Benoit Mortemard de Boisse
Guandong Liu
Jiangtao Ma
Shin-ichi Nishimura
Sai-Cheong Chung
Hisao Kiuchi
Yoshihisa Harada
Jun Kikkawa
Yoshio Kobayashi
Masashi Okubo
Atsuo Yamada
author_facet Benoit Mortemard de Boisse
Guandong Liu
Jiangtao Ma
Shin-ichi Nishimura
Sai-Cheong Chung
Hisao Kiuchi
Yoshihisa Harada
Jun Kikkawa
Yoshio Kobayashi
Masashi Okubo
Atsuo Yamada
author_sort Benoit Mortemard de Boisse
title Intermediate honeycomb ordering to trigger oxygen redox chemistry in layered battery electrode
title_short Intermediate honeycomb ordering to trigger oxygen redox chemistry in layered battery electrode
title_full Intermediate honeycomb ordering to trigger oxygen redox chemistry in layered battery electrode
title_fullStr Intermediate honeycomb ordering to trigger oxygen redox chemistry in layered battery electrode
title_full_unstemmed Intermediate honeycomb ordering to trigger oxygen redox chemistry in layered battery electrode
title_sort intermediate honeycomb ordering to trigger oxygen redox chemistry in layered battery electrode
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/4af1ca0a992f4af684194600d66b97f4
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