Enhanced multi-carbon alcohol electroproduction from CO via modulated hydrogen adsorption

The electrocatalytic upgrading of CO to higher-value fuels provides a promising route to multi-carbon alcohol products. Here, the authors show that high alcohol selectivity and activity can be achieved by incorporating palladium in copper.

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Autores principales: Jun Li, Aoni Xu, Fengwang Li, Ziyun Wang, Chengqin Zou, Christine M. Gabardo, Yuhang Wang, Adnan Ozden, Yi Xu, Dae-Hyun Nam, Yanwei Lum, Joshua Wicks, Bin Chen, Zhiqiang Wang, Jiatang Chen, Yunzhou Wen, Taotao Zhuang, Mingchuan Luo, Xiwen Du, Tsun-Kong Sham, Bo Zhang, Edward H. Sargent, David Sinton
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/4bd3d162852642a494b14a3fffe97789
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spelling oai:doaj.org-article:4bd3d162852642a494b14a3fffe977892021-12-02T16:18:02ZEnhanced multi-carbon alcohol electroproduction from CO via modulated hydrogen adsorption10.1038/s41467-020-17499-52041-1723https://doaj.org/article/4bd3d162852642a494b14a3fffe977892020-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17499-5https://doaj.org/toc/2041-1723The electrocatalytic upgrading of CO to higher-value fuels provides a promising route to multi-carbon alcohol products. Here, the authors show that high alcohol selectivity and activity can be achieved by incorporating palladium in copper.Jun LiAoni XuFengwang LiZiyun WangChengqin ZouChristine M. GabardoYuhang WangAdnan OzdenYi XuDae-Hyun NamYanwei LumJoshua WicksBin ChenZhiqiang WangJiatang ChenYunzhou WenTaotao ZhuangMingchuan LuoXiwen DuTsun-Kong ShamBo ZhangEdward H. SargentDavid SintonNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-8 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Jun Li
Aoni Xu
Fengwang Li
Ziyun Wang
Chengqin Zou
Christine M. Gabardo
Yuhang Wang
Adnan Ozden
Yi Xu
Dae-Hyun Nam
Yanwei Lum
Joshua Wicks
Bin Chen
Zhiqiang Wang
Jiatang Chen
Yunzhou Wen
Taotao Zhuang
Mingchuan Luo
Xiwen Du
Tsun-Kong Sham
Bo Zhang
Edward H. Sargent
David Sinton
Enhanced multi-carbon alcohol electroproduction from CO via modulated hydrogen adsorption
description The electrocatalytic upgrading of CO to higher-value fuels provides a promising route to multi-carbon alcohol products. Here, the authors show that high alcohol selectivity and activity can be achieved by incorporating palladium in copper.
format article
author Jun Li
Aoni Xu
Fengwang Li
Ziyun Wang
Chengqin Zou
Christine M. Gabardo
Yuhang Wang
Adnan Ozden
Yi Xu
Dae-Hyun Nam
Yanwei Lum
Joshua Wicks
Bin Chen
Zhiqiang Wang
Jiatang Chen
Yunzhou Wen
Taotao Zhuang
Mingchuan Luo
Xiwen Du
Tsun-Kong Sham
Bo Zhang
Edward H. Sargent
David Sinton
author_facet Jun Li
Aoni Xu
Fengwang Li
Ziyun Wang
Chengqin Zou
Christine M. Gabardo
Yuhang Wang
Adnan Ozden
Yi Xu
Dae-Hyun Nam
Yanwei Lum
Joshua Wicks
Bin Chen
Zhiqiang Wang
Jiatang Chen
Yunzhou Wen
Taotao Zhuang
Mingchuan Luo
Xiwen Du
Tsun-Kong Sham
Bo Zhang
Edward H. Sargent
David Sinton
author_sort Jun Li
title Enhanced multi-carbon alcohol electroproduction from CO via modulated hydrogen adsorption
title_short Enhanced multi-carbon alcohol electroproduction from CO via modulated hydrogen adsorption
title_full Enhanced multi-carbon alcohol electroproduction from CO via modulated hydrogen adsorption
title_fullStr Enhanced multi-carbon alcohol electroproduction from CO via modulated hydrogen adsorption
title_full_unstemmed Enhanced multi-carbon alcohol electroproduction from CO via modulated hydrogen adsorption
title_sort enhanced multi-carbon alcohol electroproduction from co via modulated hydrogen adsorption
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/4bd3d162852642a494b14a3fffe97789
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