Single-phase perovskite oxide with super-exchange induced atomic-scale synergistic active centers enables ultrafast hydrogen evolution

Efficient electrocatalysts are crucial for the sustainable hydrogen production as an alternative clean fuel. Here, the authors explore a single-phase perovskite oxide as a high-performance hydrogen evolution electrocatalyst via super-exchange induced atomic scale synergistic active sites.

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Autores principales: Jie Dai, Yinlong Zhu, Hassan A. Tahini, Qian Lin, Yu Chen, Daqin Guan, Chuan Zhou, Zhiwei Hu, Hong-Ji Lin, Ting-Shan Chan, Chien-Te Chen, Sean C. Smith, Huanting Wang, Wei Zhou, Zongping Shao
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/8d1feb36b45d4558b9258c53f5c64e18
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spelling oai:doaj.org-article:8d1feb36b45d4558b9258c53f5c64e182021-12-02T16:56:30ZSingle-phase perovskite oxide with super-exchange induced atomic-scale synergistic active centers enables ultrafast hydrogen evolution10.1038/s41467-020-19433-12041-1723https://doaj.org/article/8d1feb36b45d4558b9258c53f5c64e182020-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-19433-1https://doaj.org/toc/2041-1723Efficient electrocatalysts are crucial for the sustainable hydrogen production as an alternative clean fuel. Here, the authors explore a single-phase perovskite oxide as a high-performance hydrogen evolution electrocatalyst via super-exchange induced atomic scale synergistic active sites.Jie DaiYinlong ZhuHassan A. TahiniQian LinYu ChenDaqin GuanChuan ZhouZhiwei HuHong-Ji LinTing-Shan ChanChien-Te ChenSean C. SmithHuanting WangWei ZhouZongping ShaoNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-10 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Jie Dai
Yinlong Zhu
Hassan A. Tahini
Qian Lin
Yu Chen
Daqin Guan
Chuan Zhou
Zhiwei Hu
Hong-Ji Lin
Ting-Shan Chan
Chien-Te Chen
Sean C. Smith
Huanting Wang
Wei Zhou
Zongping Shao
Single-phase perovskite oxide with super-exchange induced atomic-scale synergistic active centers enables ultrafast hydrogen evolution
description Efficient electrocatalysts are crucial for the sustainable hydrogen production as an alternative clean fuel. Here, the authors explore a single-phase perovskite oxide as a high-performance hydrogen evolution electrocatalyst via super-exchange induced atomic scale synergistic active sites.
format article
author Jie Dai
Yinlong Zhu
Hassan A. Tahini
Qian Lin
Yu Chen
Daqin Guan
Chuan Zhou
Zhiwei Hu
Hong-Ji Lin
Ting-Shan Chan
Chien-Te Chen
Sean C. Smith
Huanting Wang
Wei Zhou
Zongping Shao
author_facet Jie Dai
Yinlong Zhu
Hassan A. Tahini
Qian Lin
Yu Chen
Daqin Guan
Chuan Zhou
Zhiwei Hu
Hong-Ji Lin
Ting-Shan Chan
Chien-Te Chen
Sean C. Smith
Huanting Wang
Wei Zhou
Zongping Shao
author_sort Jie Dai
title Single-phase perovskite oxide with super-exchange induced atomic-scale synergistic active centers enables ultrafast hydrogen evolution
title_short Single-phase perovskite oxide with super-exchange induced atomic-scale synergistic active centers enables ultrafast hydrogen evolution
title_full Single-phase perovskite oxide with super-exchange induced atomic-scale synergistic active centers enables ultrafast hydrogen evolution
title_fullStr Single-phase perovskite oxide with super-exchange induced atomic-scale synergistic active centers enables ultrafast hydrogen evolution
title_full_unstemmed Single-phase perovskite oxide with super-exchange induced atomic-scale synergistic active centers enables ultrafast hydrogen evolution
title_sort single-phase perovskite oxide with super-exchange induced atomic-scale synergistic active centers enables ultrafast hydrogen evolution
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/8d1feb36b45d4558b9258c53f5c64e18
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