A high-performance oxygen evolution catalyst in neutral-pH for sunlight-driven CO2 reduction

Solar-to-fuel conversion under mild conditions offers a renewable means to store energy. Here authors report a Brownmillerite oxide for neutral-pH oxygen evolution that, when integrated with an anodized silver cathode, enables a 13.9% energy-conversion efficiency for light-driven CO2 reduction

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Autores principales: Li Qin Zhou, Chen Ling, Hui Zhou, Xiang Wang, Joseph Liao, Gunugunuri K. Reddy, Liangzi Deng, Torin C. Peck, Ruigang Zhang, M. Stanley Whittingham, Chongmin Wang, Ching-Wu Chu, Yan Yao, Hongfei Jia
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/19f60f6ac8024ec7a8d649d4dbeb5abc
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spelling oai:doaj.org-article:19f60f6ac8024ec7a8d649d4dbeb5abc2021-12-02T16:57:55ZA high-performance oxygen evolution catalyst in neutral-pH for sunlight-driven CO2 reduction10.1038/s41467-019-12009-82041-1723https://doaj.org/article/19f60f6ac8024ec7a8d649d4dbeb5abc2019-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-12009-8https://doaj.org/toc/2041-1723Solar-to-fuel conversion under mild conditions offers a renewable means to store energy. Here authors report a Brownmillerite oxide for neutral-pH oxygen evolution that, when integrated with an anodized silver cathode, enables a 13.9% energy-conversion efficiency for light-driven CO2 reductionLi Qin ZhouChen LingHui ZhouXiang WangJoseph LiaoGunugunuri K. ReddyLiangzi DengTorin C. PeckRuigang ZhangM. Stanley WhittinghamChongmin WangChing-Wu ChuYan YaoHongfei JiaNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-8 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Li Qin Zhou
Chen Ling
Hui Zhou
Xiang Wang
Joseph Liao
Gunugunuri K. Reddy
Liangzi Deng
Torin C. Peck
Ruigang Zhang
M. Stanley Whittingham
Chongmin Wang
Ching-Wu Chu
Yan Yao
Hongfei Jia
A high-performance oxygen evolution catalyst in neutral-pH for sunlight-driven CO2 reduction
description Solar-to-fuel conversion under mild conditions offers a renewable means to store energy. Here authors report a Brownmillerite oxide for neutral-pH oxygen evolution that, when integrated with an anodized silver cathode, enables a 13.9% energy-conversion efficiency for light-driven CO2 reduction
format article
author Li Qin Zhou
Chen Ling
Hui Zhou
Xiang Wang
Joseph Liao
Gunugunuri K. Reddy
Liangzi Deng
Torin C. Peck
Ruigang Zhang
M. Stanley Whittingham
Chongmin Wang
Ching-Wu Chu
Yan Yao
Hongfei Jia
author_facet Li Qin Zhou
Chen Ling
Hui Zhou
Xiang Wang
Joseph Liao
Gunugunuri K. Reddy
Liangzi Deng
Torin C. Peck
Ruigang Zhang
M. Stanley Whittingham
Chongmin Wang
Ching-Wu Chu
Yan Yao
Hongfei Jia
author_sort Li Qin Zhou
title A high-performance oxygen evolution catalyst in neutral-pH for sunlight-driven CO2 reduction
title_short A high-performance oxygen evolution catalyst in neutral-pH for sunlight-driven CO2 reduction
title_full A high-performance oxygen evolution catalyst in neutral-pH for sunlight-driven CO2 reduction
title_fullStr A high-performance oxygen evolution catalyst in neutral-pH for sunlight-driven CO2 reduction
title_full_unstemmed A high-performance oxygen evolution catalyst in neutral-pH for sunlight-driven CO2 reduction
title_sort high-performance oxygen evolution catalyst in neutral-ph for sunlight-driven co2 reduction
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/19f60f6ac8024ec7a8d649d4dbeb5abc
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