A niobium and tantalum co-doped perovskite cathode for solid oxide fuel cells operating below 500 °C

Sluggish activity of cathode materials impedes operation of solid oxide fuel cells at low temperatures. Here, the authors report a niobium and tantalum co-doped perovskite cathode exhibiting high electroactivity below 500 °C, and argue that the dopants improve the cathode performance synergistically...

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Autores principales: Mengran Li, Mingwen Zhao, Feng Li, Wei Zhou, Vanessa K. Peterson, Xiaoyong Xu, Zongping Shao, Ian Gentle, Zhonghua Zhu
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/0c877afa272248baa80229c082b891e2
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spelling oai:doaj.org-article:0c877afa272248baa80229c082b891e22021-12-02T14:42:16ZA niobium and tantalum co-doped perovskite cathode for solid oxide fuel cells operating below 500 °C10.1038/ncomms139902041-1723https://doaj.org/article/0c877afa272248baa80229c082b891e22017-01-01T00:00:00Zhttps://doi.org/10.1038/ncomms13990https://doaj.org/toc/2041-1723Sluggish activity of cathode materials impedes operation of solid oxide fuel cells at low temperatures. Here, the authors report a niobium and tantalum co-doped perovskite cathode exhibiting high electroactivity below 500 °C, and argue that the dopants improve the cathode performance synergistically.Mengran LiMingwen ZhaoFeng LiWei ZhouVanessa K. PetersonXiaoyong XuZongping ShaoIan GentleZhonghua ZhuNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-9 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Mengran Li
Mingwen Zhao
Feng Li
Wei Zhou
Vanessa K. Peterson
Xiaoyong Xu
Zongping Shao
Ian Gentle
Zhonghua Zhu
A niobium and tantalum co-doped perovskite cathode for solid oxide fuel cells operating below 500 °C
description Sluggish activity of cathode materials impedes operation of solid oxide fuel cells at low temperatures. Here, the authors report a niobium and tantalum co-doped perovskite cathode exhibiting high electroactivity below 500 °C, and argue that the dopants improve the cathode performance synergistically.
format article
author Mengran Li
Mingwen Zhao
Feng Li
Wei Zhou
Vanessa K. Peterson
Xiaoyong Xu
Zongping Shao
Ian Gentle
Zhonghua Zhu
author_facet Mengran Li
Mingwen Zhao
Feng Li
Wei Zhou
Vanessa K. Peterson
Xiaoyong Xu
Zongping Shao
Ian Gentle
Zhonghua Zhu
author_sort Mengran Li
title A niobium and tantalum co-doped perovskite cathode for solid oxide fuel cells operating below 500 °C
title_short A niobium and tantalum co-doped perovskite cathode for solid oxide fuel cells operating below 500 °C
title_full A niobium and tantalum co-doped perovskite cathode for solid oxide fuel cells operating below 500 °C
title_fullStr A niobium and tantalum co-doped perovskite cathode for solid oxide fuel cells operating below 500 °C
title_full_unstemmed A niobium and tantalum co-doped perovskite cathode for solid oxide fuel cells operating below 500 °C
title_sort niobium and tantalum co-doped perovskite cathode for solid oxide fuel cells operating below 500 °c
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/0c877afa272248baa80229c082b891e2
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