Isolated copper–tin atomic interfaces tuning electrocatalytic CO2 conversion

The understanding of catalytic reactions at the atomic interface is vital; however, the characterization and mechanism studies of atomically dispersed catalysts remain challenging. Here, the authors demonstrate Cu–Sn surface alloys with isolated Sn atoms on a Cu host to achieve efficient CO2 to CO c...

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Autores principales: Wenhao Ren, Xin Tan, Jiangtao Qu, Sesi Li, Jiantao Li, Xin Liu, Simon P. Ringer, Julie M. Cairney, Kaixue Wang, Sean C. Smith, Chuan Zhao
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/23c0a4277fd14b9999d94e4324bad3fb
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spelling oai:doaj.org-article:23c0a4277fd14b9999d94e4324bad3fb2021-12-02T15:53:25ZIsolated copper–tin atomic interfaces tuning electrocatalytic CO2 conversion10.1038/s41467-021-21750-y2041-1723https://doaj.org/article/23c0a4277fd14b9999d94e4324bad3fb2021-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-21750-yhttps://doaj.org/toc/2041-1723The understanding of catalytic reactions at the atomic interface is vital; however, the characterization and mechanism studies of atomically dispersed catalysts remain challenging. Here, the authors demonstrate Cu–Sn surface alloys with isolated Sn atoms on a Cu host to achieve efficient CO2 to CO conversion.Wenhao RenXin TanJiangtao QuSesi LiJiantao LiXin LiuSimon P. RingerJulie M. CairneyKaixue WangSean C. SmithChuan ZhaoNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-8 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Wenhao Ren
Xin Tan
Jiangtao Qu
Sesi Li
Jiantao Li
Xin Liu
Simon P. Ringer
Julie M. Cairney
Kaixue Wang
Sean C. Smith
Chuan Zhao
Isolated copper–tin atomic interfaces tuning electrocatalytic CO2 conversion
description The understanding of catalytic reactions at the atomic interface is vital; however, the characterization and mechanism studies of atomically dispersed catalysts remain challenging. Here, the authors demonstrate Cu–Sn surface alloys with isolated Sn atoms on a Cu host to achieve efficient CO2 to CO conversion.
format article
author Wenhao Ren
Xin Tan
Jiangtao Qu
Sesi Li
Jiantao Li
Xin Liu
Simon P. Ringer
Julie M. Cairney
Kaixue Wang
Sean C. Smith
Chuan Zhao
author_facet Wenhao Ren
Xin Tan
Jiangtao Qu
Sesi Li
Jiantao Li
Xin Liu
Simon P. Ringer
Julie M. Cairney
Kaixue Wang
Sean C. Smith
Chuan Zhao
author_sort Wenhao Ren
title Isolated copper–tin atomic interfaces tuning electrocatalytic CO2 conversion
title_short Isolated copper–tin atomic interfaces tuning electrocatalytic CO2 conversion
title_full Isolated copper–tin atomic interfaces tuning electrocatalytic CO2 conversion
title_fullStr Isolated copper–tin atomic interfaces tuning electrocatalytic CO2 conversion
title_full_unstemmed Isolated copper–tin atomic interfaces tuning electrocatalytic CO2 conversion
title_sort isolated copper–tin atomic interfaces tuning electrocatalytic co2 conversion
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/23c0a4277fd14b9999d94e4324bad3fb
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AT xintan isolatedcoppertinatomicinterfacestuningelectrocatalyticco2conversion
AT jiangtaoqu isolatedcoppertinatomicinterfacestuningelectrocatalyticco2conversion
AT sesili isolatedcoppertinatomicinterfacestuningelectrocatalyticco2conversion
AT jiantaoli isolatedcoppertinatomicinterfacestuningelectrocatalyticco2conversion
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AT simonpringer isolatedcoppertinatomicinterfacestuningelectrocatalyticco2conversion
AT juliemcairney isolatedcoppertinatomicinterfacestuningelectrocatalyticco2conversion
AT kaixuewang isolatedcoppertinatomicinterfacestuningelectrocatalyticco2conversion
AT seancsmith isolatedcoppertinatomicinterfacestuningelectrocatalyticco2conversion
AT chuanzhao isolatedcoppertinatomicinterfacestuningelectrocatalyticco2conversion
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