Copper-on-nitride enhances the stable electrosynthesis of multi-carbon products from CO2

While multi-carbon (C2+) products present high-value species attainable from emitted carbon dioxide, it is challenging to prepare stable, C2+ selective catalysts. Here, authors support copper on copper nitride to improve copper’s electrocatalytic stability and selectivity toward C2+ synthesis.

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Autores principales: Zhi-Qin Liang, Tao-Tao Zhuang, Ali Seifitokaldani, Jun Li, Chun-Wei Huang, Chih-Shan Tan, Yi Li, Phil De Luna, Cao Thang Dinh, Yongfeng Hu, Qunfeng Xiao, Pei-Lun Hsieh, Yuhang Wang, Fengwang Li, Rafael Quintero-Bermudez, Yansong Zhou, Peining Chen, Yuanjie Pang, Shen-Chuan Lo, Lih-Juann Chen, Hairen Tan, Zheng Xu, Suling Zhao, David Sinton, Edward H. Sargent
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/b456c4a90290493aae093fbc1b4b8293
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spelling oai:doaj.org-article:b456c4a90290493aae093fbc1b4b82932021-12-02T15:34:44ZCopper-on-nitride enhances the stable electrosynthesis of multi-carbon products from CO210.1038/s41467-018-06311-02041-1723https://doaj.org/article/b456c4a90290493aae093fbc1b4b82932018-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-06311-0https://doaj.org/toc/2041-1723While multi-carbon (C2+) products present high-value species attainable from emitted carbon dioxide, it is challenging to prepare stable, C2+ selective catalysts. Here, authors support copper on copper nitride to improve copper’s electrocatalytic stability and selectivity toward C2+ synthesis.Zhi-Qin LiangTao-Tao ZhuangAli SeifitokaldaniJun LiChun-Wei HuangChih-Shan TanYi LiPhil De LunaCao Thang DinhYongfeng HuQunfeng XiaoPei-Lun HsiehYuhang WangFengwang LiRafael Quintero-BermudezYansong ZhouPeining ChenYuanjie PangShen-Chuan LoLih-Juann ChenHairen TanZheng XuSuling ZhaoDavid SintonEdward H. SargentNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-8 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Zhi-Qin Liang
Tao-Tao Zhuang
Ali Seifitokaldani
Jun Li
Chun-Wei Huang
Chih-Shan Tan
Yi Li
Phil De Luna
Cao Thang Dinh
Yongfeng Hu
Qunfeng Xiao
Pei-Lun Hsieh
Yuhang Wang
Fengwang Li
Rafael Quintero-Bermudez
Yansong Zhou
Peining Chen
Yuanjie Pang
Shen-Chuan Lo
Lih-Juann Chen
Hairen Tan
Zheng Xu
Suling Zhao
David Sinton
Edward H. Sargent
Copper-on-nitride enhances the stable electrosynthesis of multi-carbon products from CO2
description While multi-carbon (C2+) products present high-value species attainable from emitted carbon dioxide, it is challenging to prepare stable, C2+ selective catalysts. Here, authors support copper on copper nitride to improve copper’s electrocatalytic stability and selectivity toward C2+ synthesis.
format article
author Zhi-Qin Liang
Tao-Tao Zhuang
Ali Seifitokaldani
Jun Li
Chun-Wei Huang
Chih-Shan Tan
Yi Li
Phil De Luna
Cao Thang Dinh
Yongfeng Hu
Qunfeng Xiao
Pei-Lun Hsieh
Yuhang Wang
Fengwang Li
Rafael Quintero-Bermudez
Yansong Zhou
Peining Chen
Yuanjie Pang
Shen-Chuan Lo
Lih-Juann Chen
Hairen Tan
Zheng Xu
Suling Zhao
David Sinton
Edward H. Sargent
author_facet Zhi-Qin Liang
Tao-Tao Zhuang
Ali Seifitokaldani
Jun Li
Chun-Wei Huang
Chih-Shan Tan
Yi Li
Phil De Luna
Cao Thang Dinh
Yongfeng Hu
Qunfeng Xiao
Pei-Lun Hsieh
Yuhang Wang
Fengwang Li
Rafael Quintero-Bermudez
Yansong Zhou
Peining Chen
Yuanjie Pang
Shen-Chuan Lo
Lih-Juann Chen
Hairen Tan
Zheng Xu
Suling Zhao
David Sinton
Edward H. Sargent
author_sort Zhi-Qin Liang
title Copper-on-nitride enhances the stable electrosynthesis of multi-carbon products from CO2
title_short Copper-on-nitride enhances the stable electrosynthesis of multi-carbon products from CO2
title_full Copper-on-nitride enhances the stable electrosynthesis of multi-carbon products from CO2
title_fullStr Copper-on-nitride enhances the stable electrosynthesis of multi-carbon products from CO2
title_full_unstemmed Copper-on-nitride enhances the stable electrosynthesis of multi-carbon products from CO2
title_sort copper-on-nitride enhances the stable electrosynthesis of multi-carbon products from co2
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/b456c4a90290493aae093fbc1b4b8293
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