Operando spectroscopy study of the carbon dioxide electro-reduction by iron species on nitrogen-doped carbon

Trapping carbon dioxide within usable chemicals is a promising means to mitigate climate change, yet electrochemical C–C couplings are challenging to perform. Here, the authors prepared iron oxyhydroxides on nitrogen-doped carbon that efficiently convert carbon dioxide to acetic acid.

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Auteurs principaux: Chiara Genovese, Manfred E. Schuster, Emma K. Gibson, Diego Gianolio, Victor Posligua, Ricardo Grau-Crespo, Giannantonio Cibin, Peter P. Wells, Debi Garai, Vladyslav Solokha, Sandra Krick Calderon, Juan J. Velasco-Velez, Claudio Ampelli, Siglinda Perathoner, Georg Held, Gabriele Centi, Rosa Arrigo
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Langue:EN
Publié: Nature Portfolio 2018
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Accès en ligne:https://doaj.org/article/9424b3e622db4ecfbed471564f724d99
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spelling oai:doaj.org-article:9424b3e622db4ecfbed471564f724d992021-12-02T17:31:46ZOperando spectroscopy study of the carbon dioxide electro-reduction by iron species on nitrogen-doped carbon10.1038/s41467-018-03138-72041-1723https://doaj.org/article/9424b3e622db4ecfbed471564f724d992018-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-03138-7https://doaj.org/toc/2041-1723Trapping carbon dioxide within usable chemicals is a promising means to mitigate climate change, yet electrochemical C–C couplings are challenging to perform. Here, the authors prepared iron oxyhydroxides on nitrogen-doped carbon that efficiently convert carbon dioxide to acetic acid.Chiara GenoveseManfred E. SchusterEmma K. GibsonDiego GianolioVictor PosliguaRicardo Grau-CrespoGiannantonio CibinPeter P. WellsDebi GaraiVladyslav SolokhaSandra Krick CalderonJuan J. Velasco-VelezClaudio AmpelliSiglinda PerathonerGeorg HeldGabriele CentiRosa ArrigoNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-12 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Chiara Genovese
Manfred E. Schuster
Emma K. Gibson
Diego Gianolio
Victor Posligua
Ricardo Grau-Crespo
Giannantonio Cibin
Peter P. Wells
Debi Garai
Vladyslav Solokha
Sandra Krick Calderon
Juan J. Velasco-Velez
Claudio Ampelli
Siglinda Perathoner
Georg Held
Gabriele Centi
Rosa Arrigo
Operando spectroscopy study of the carbon dioxide electro-reduction by iron species on nitrogen-doped carbon
description Trapping carbon dioxide within usable chemicals is a promising means to mitigate climate change, yet electrochemical C–C couplings are challenging to perform. Here, the authors prepared iron oxyhydroxides on nitrogen-doped carbon that efficiently convert carbon dioxide to acetic acid.
format article
author Chiara Genovese
Manfred E. Schuster
Emma K. Gibson
Diego Gianolio
Victor Posligua
Ricardo Grau-Crespo
Giannantonio Cibin
Peter P. Wells
Debi Garai
Vladyslav Solokha
Sandra Krick Calderon
Juan J. Velasco-Velez
Claudio Ampelli
Siglinda Perathoner
Georg Held
Gabriele Centi
Rosa Arrigo
author_facet Chiara Genovese
Manfred E. Schuster
Emma K. Gibson
Diego Gianolio
Victor Posligua
Ricardo Grau-Crespo
Giannantonio Cibin
Peter P. Wells
Debi Garai
Vladyslav Solokha
Sandra Krick Calderon
Juan J. Velasco-Velez
Claudio Ampelli
Siglinda Perathoner
Georg Held
Gabriele Centi
Rosa Arrigo
author_sort Chiara Genovese
title Operando spectroscopy study of the carbon dioxide electro-reduction by iron species on nitrogen-doped carbon
title_short Operando spectroscopy study of the carbon dioxide electro-reduction by iron species on nitrogen-doped carbon
title_full Operando spectroscopy study of the carbon dioxide electro-reduction by iron species on nitrogen-doped carbon
title_fullStr Operando spectroscopy study of the carbon dioxide electro-reduction by iron species on nitrogen-doped carbon
title_full_unstemmed Operando spectroscopy study of the carbon dioxide electro-reduction by iron species on nitrogen-doped carbon
title_sort operando spectroscopy study of the carbon dioxide electro-reduction by iron species on nitrogen-doped carbon
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/9424b3e622db4ecfbed471564f724d99
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