Isolated single atom cobalt in Bi3O4Br atomic layers to trigger efficient CO2 photoreduction

While the conversion of CO2 to high-value products provides a promising means to remove and utilize atmospheric carbon, few materials can do so without wasteful, sacrificial reagents. Here, authors prepare single-atom Co on Bi3O4Br nanosheets as CO2 reduction catalysts using water and light.

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Autores principales: Jun Di, Chao Chen, Shi-Ze Yang, Shuangming Chen, Meilin Duan, Jun Xiong, Chao Zhu, Ran Long, Wei Hao, Zhen Chi, Hailong Chen, Yu-Xiang Weng, Jiexiang Xia, Li Song, Shuzhou Li, Huaming Li, Zheng Liu
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/7ab011b01cfe442a92c120d2f582d6b2
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spelling oai:doaj.org-article:7ab011b01cfe442a92c120d2f582d6b22021-12-02T15:35:13ZIsolated single atom cobalt in Bi3O4Br atomic layers to trigger efficient CO2 photoreduction10.1038/s41467-019-10392-w2041-1723https://doaj.org/article/7ab011b01cfe442a92c120d2f582d6b22019-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-10392-whttps://doaj.org/toc/2041-1723While the conversion of CO2 to high-value products provides a promising means to remove and utilize atmospheric carbon, few materials can do so without wasteful, sacrificial reagents. Here, authors prepare single-atom Co on Bi3O4Br nanosheets as CO2 reduction catalysts using water and light.Jun DiChao ChenShi-Ze YangShuangming ChenMeilin DuanJun XiongChao ZhuRan LongWei HaoZhen ChiHailong ChenYu-Xiang WengJiexiang XiaLi SongShuzhou LiHuaming LiZheng LiuNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-7 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Jun Di
Chao Chen
Shi-Ze Yang
Shuangming Chen
Meilin Duan
Jun Xiong
Chao Zhu
Ran Long
Wei Hao
Zhen Chi
Hailong Chen
Yu-Xiang Weng
Jiexiang Xia
Li Song
Shuzhou Li
Huaming Li
Zheng Liu
Isolated single atom cobalt in Bi3O4Br atomic layers to trigger efficient CO2 photoreduction
description While the conversion of CO2 to high-value products provides a promising means to remove and utilize atmospheric carbon, few materials can do so without wasteful, sacrificial reagents. Here, authors prepare single-atom Co on Bi3O4Br nanosheets as CO2 reduction catalysts using water and light.
format article
author Jun Di
Chao Chen
Shi-Ze Yang
Shuangming Chen
Meilin Duan
Jun Xiong
Chao Zhu
Ran Long
Wei Hao
Zhen Chi
Hailong Chen
Yu-Xiang Weng
Jiexiang Xia
Li Song
Shuzhou Li
Huaming Li
Zheng Liu
author_facet Jun Di
Chao Chen
Shi-Ze Yang
Shuangming Chen
Meilin Duan
Jun Xiong
Chao Zhu
Ran Long
Wei Hao
Zhen Chi
Hailong Chen
Yu-Xiang Weng
Jiexiang Xia
Li Song
Shuzhou Li
Huaming Li
Zheng Liu
author_sort Jun Di
title Isolated single atom cobalt in Bi3O4Br atomic layers to trigger efficient CO2 photoreduction
title_short Isolated single atom cobalt in Bi3O4Br atomic layers to trigger efficient CO2 photoreduction
title_full Isolated single atom cobalt in Bi3O4Br atomic layers to trigger efficient CO2 photoreduction
title_fullStr Isolated single atom cobalt in Bi3O4Br atomic layers to trigger efficient CO2 photoreduction
title_full_unstemmed Isolated single atom cobalt in Bi3O4Br atomic layers to trigger efficient CO2 photoreduction
title_sort isolated single atom cobalt in bi3o4br atomic layers to trigger efficient co2 photoreduction
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/7ab011b01cfe442a92c120d2f582d6b2
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