Low coordination number copper catalysts for electrochemical CO2 methanation in a membrane electrode assembly

Electrochemical conversion of carbon dioxide to methane can store intermittent renewable electricity in a staple of global energy. Here, the authors develop a moderator strategy to maintain the catalyst in a low coordination state, thereby enabling stable and selective electrochemical methanation.

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Autores principales: Yi Xu, Fengwang Li, Aoni Xu, Jonathan P. Edwards, Sung-Fu Hung, Christine M. Gabardo, Colin P. O’Brien, Shijie Liu, Xue Wang, Yuhang Li, Joshua Wicks, Rui Kai Miao, Yuan Liu, Jun Li, Jianan Erick Huang, Jehad Abed, Yuhang Wang, Edward H. Sargent, David Sinton
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/94dace3ef756458f992b2fd80a5bcd6d
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spelling oai:doaj.org-article:94dace3ef756458f992b2fd80a5bcd6d2021-12-02T15:52:52ZLow coordination number copper catalysts for electrochemical CO2 methanation in a membrane electrode assembly10.1038/s41467-021-23065-42041-1723https://doaj.org/article/94dace3ef756458f992b2fd80a5bcd6d2021-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-23065-4https://doaj.org/toc/2041-1723Electrochemical conversion of carbon dioxide to methane can store intermittent renewable electricity in a staple of global energy. Here, the authors develop a moderator strategy to maintain the catalyst in a low coordination state, thereby enabling stable and selective electrochemical methanation.Yi XuFengwang LiAoni XuJonathan P. EdwardsSung-Fu HungChristine M. GabardoColin P. O’BrienShijie LiuXue WangYuhang LiJoshua WicksRui Kai MiaoYuan LiuJun LiJianan Erick HuangJehad AbedYuhang WangEdward H. SargentDavid SintonNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-7 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Yi Xu
Fengwang Li
Aoni Xu
Jonathan P. Edwards
Sung-Fu Hung
Christine M. Gabardo
Colin P. O’Brien
Shijie Liu
Xue Wang
Yuhang Li
Joshua Wicks
Rui Kai Miao
Yuan Liu
Jun Li
Jianan Erick Huang
Jehad Abed
Yuhang Wang
Edward H. Sargent
David Sinton
Low coordination number copper catalysts for electrochemical CO2 methanation in a membrane electrode assembly
description Electrochemical conversion of carbon dioxide to methane can store intermittent renewable electricity in a staple of global energy. Here, the authors develop a moderator strategy to maintain the catalyst in a low coordination state, thereby enabling stable and selective electrochemical methanation.
format article
author Yi Xu
Fengwang Li
Aoni Xu
Jonathan P. Edwards
Sung-Fu Hung
Christine M. Gabardo
Colin P. O’Brien
Shijie Liu
Xue Wang
Yuhang Li
Joshua Wicks
Rui Kai Miao
Yuan Liu
Jun Li
Jianan Erick Huang
Jehad Abed
Yuhang Wang
Edward H. Sargent
David Sinton
author_facet Yi Xu
Fengwang Li
Aoni Xu
Jonathan P. Edwards
Sung-Fu Hung
Christine M. Gabardo
Colin P. O’Brien
Shijie Liu
Xue Wang
Yuhang Li
Joshua Wicks
Rui Kai Miao
Yuan Liu
Jun Li
Jianan Erick Huang
Jehad Abed
Yuhang Wang
Edward H. Sargent
David Sinton
author_sort Yi Xu
title Low coordination number copper catalysts for electrochemical CO2 methanation in a membrane electrode assembly
title_short Low coordination number copper catalysts for electrochemical CO2 methanation in a membrane electrode assembly
title_full Low coordination number copper catalysts for electrochemical CO2 methanation in a membrane electrode assembly
title_fullStr Low coordination number copper catalysts for electrochemical CO2 methanation in a membrane electrode assembly
title_full_unstemmed Low coordination number copper catalysts for electrochemical CO2 methanation in a membrane electrode assembly
title_sort low coordination number copper catalysts for electrochemical co2 methanation in a membrane electrode assembly
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/94dace3ef756458f992b2fd80a5bcd6d
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