High oxide-ion conductivity through the interstitial oxygen site in Ba7Nb4MoO20-based hexagonal perovskite related oxides

Oxide-ion conductors are important in various applications for clean energy. Here, authors report high oxide-ion conductivity of hexagonal perovskite-related oxide Ba7Nb3.9Mo1.1O20.05, which is ascribed to the interstitialcy diffusion and low activation energy for oxide-ion conductivity.

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Autores principales: Masatomo Yashima, Takafumi Tsujiguchi, Yuichi Sakuda, Yuta Yasui, Yu Zhou, Kotaro Fujii, Shuki Torii, Takashi Kamiyama, Stephen J. Skinner
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/a506cec8dfb34aa9a5942eb9ffbfc507
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spelling oai:doaj.org-article:a506cec8dfb34aa9a5942eb9ffbfc5072021-12-02T10:48:09ZHigh oxide-ion conductivity through the interstitial oxygen site in Ba7Nb4MoO20-based hexagonal perovskite related oxides10.1038/s41467-020-20859-w2041-1723https://doaj.org/article/a506cec8dfb34aa9a5942eb9ffbfc5072021-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-20859-whttps://doaj.org/toc/2041-1723Oxide-ion conductors are important in various applications for clean energy. Here, authors report high oxide-ion conductivity of hexagonal perovskite-related oxide Ba7Nb3.9Mo1.1O20.05, which is ascribed to the interstitialcy diffusion and low activation energy for oxide-ion conductivity.Masatomo YashimaTakafumi TsujiguchiYuichi SakudaYuta YasuiYu ZhouKotaro FujiiShuki ToriiTakashi KamiyamaStephen J. SkinnerNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-7 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Masatomo Yashima
Takafumi Tsujiguchi
Yuichi Sakuda
Yuta Yasui
Yu Zhou
Kotaro Fujii
Shuki Torii
Takashi Kamiyama
Stephen J. Skinner
High oxide-ion conductivity through the interstitial oxygen site in Ba7Nb4MoO20-based hexagonal perovskite related oxides
description Oxide-ion conductors are important in various applications for clean energy. Here, authors report high oxide-ion conductivity of hexagonal perovskite-related oxide Ba7Nb3.9Mo1.1O20.05, which is ascribed to the interstitialcy diffusion and low activation energy for oxide-ion conductivity.
format article
author Masatomo Yashima
Takafumi Tsujiguchi
Yuichi Sakuda
Yuta Yasui
Yu Zhou
Kotaro Fujii
Shuki Torii
Takashi Kamiyama
Stephen J. Skinner
author_facet Masatomo Yashima
Takafumi Tsujiguchi
Yuichi Sakuda
Yuta Yasui
Yu Zhou
Kotaro Fujii
Shuki Torii
Takashi Kamiyama
Stephen J. Skinner
author_sort Masatomo Yashima
title High oxide-ion conductivity through the interstitial oxygen site in Ba7Nb4MoO20-based hexagonal perovskite related oxides
title_short High oxide-ion conductivity through the interstitial oxygen site in Ba7Nb4MoO20-based hexagonal perovskite related oxides
title_full High oxide-ion conductivity through the interstitial oxygen site in Ba7Nb4MoO20-based hexagonal perovskite related oxides
title_fullStr High oxide-ion conductivity through the interstitial oxygen site in Ba7Nb4MoO20-based hexagonal perovskite related oxides
title_full_unstemmed High oxide-ion conductivity through the interstitial oxygen site in Ba7Nb4MoO20-based hexagonal perovskite related oxides
title_sort high oxide-ion conductivity through the interstitial oxygen site in ba7nb4moo20-based hexagonal perovskite related oxides
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/a506cec8dfb34aa9a5942eb9ffbfc507
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