Ligand-induced substrate steering and reshaping of [Ag2(H)]+ scaffold for selective CO2 extrusion from formic acid

Designing catalysts and understanding the influence of ligands for particular transformations remains a highly challenging task. Here, the authors show that bisphosphine ligands can alter the geometry of the active site in silver catalysts, driving protonation and ultimately extrusion of carbon diox...

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Autores principales: Athanasios Zavras, George N. Khairallah, Marjan Krstić, Marion Girod, Steven Daly, Rodolphe Antoine, Philippe Maitre, Roger J. Mulder, Stefanie-Ann Alexander, Vlasta Bonačić-Koutecký, Philippe Dugourd, Richard A. J. O’Hair
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Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/5c9942ddd8b84c90bbfe868edef555cf
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spelling oai:doaj.org-article:5c9942ddd8b84c90bbfe868edef555cf2021-12-02T16:57:49ZLigand-induced substrate steering and reshaping of [Ag2(H)]+ scaffold for selective CO2 extrusion from formic acid10.1038/ncomms117462041-1723https://doaj.org/article/5c9942ddd8b84c90bbfe868edef555cf2016-06-01T00:00:00Zhttps://doi.org/10.1038/ncomms11746https://doaj.org/toc/2041-1723Designing catalysts and understanding the influence of ligands for particular transformations remains a highly challenging task. Here, the authors show that bisphosphine ligands can alter the geometry of the active site in silver catalysts, driving protonation and ultimately extrusion of carbon dioxide from formic acid.Athanasios ZavrasGeorge N. KhairallahMarjan KrstićMarion GirodSteven DalyRodolphe AntoinePhilippe MaitreRoger J. MulderStefanie-Ann AlexanderVlasta Bonačić-KouteckýPhilippe DugourdRichard A. J. O’HairNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-8 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Athanasios Zavras
George N. Khairallah
Marjan Krstić
Marion Girod
Steven Daly
Rodolphe Antoine
Philippe Maitre
Roger J. Mulder
Stefanie-Ann Alexander
Vlasta Bonačić-Koutecký
Philippe Dugourd
Richard A. J. O’Hair
Ligand-induced substrate steering and reshaping of [Ag2(H)]+ scaffold for selective CO2 extrusion from formic acid
description Designing catalysts and understanding the influence of ligands for particular transformations remains a highly challenging task. Here, the authors show that bisphosphine ligands can alter the geometry of the active site in silver catalysts, driving protonation and ultimately extrusion of carbon dioxide from formic acid.
format article
author Athanasios Zavras
George N. Khairallah
Marjan Krstić
Marion Girod
Steven Daly
Rodolphe Antoine
Philippe Maitre
Roger J. Mulder
Stefanie-Ann Alexander
Vlasta Bonačić-Koutecký
Philippe Dugourd
Richard A. J. O’Hair
author_facet Athanasios Zavras
George N. Khairallah
Marjan Krstić
Marion Girod
Steven Daly
Rodolphe Antoine
Philippe Maitre
Roger J. Mulder
Stefanie-Ann Alexander
Vlasta Bonačić-Koutecký
Philippe Dugourd
Richard A. J. O’Hair
author_sort Athanasios Zavras
title Ligand-induced substrate steering and reshaping of [Ag2(H)]+ scaffold for selective CO2 extrusion from formic acid
title_short Ligand-induced substrate steering and reshaping of [Ag2(H)]+ scaffold for selective CO2 extrusion from formic acid
title_full Ligand-induced substrate steering and reshaping of [Ag2(H)]+ scaffold for selective CO2 extrusion from formic acid
title_fullStr Ligand-induced substrate steering and reshaping of [Ag2(H)]+ scaffold for selective CO2 extrusion from formic acid
title_full_unstemmed Ligand-induced substrate steering and reshaping of [Ag2(H)]+ scaffold for selective CO2 extrusion from formic acid
title_sort ligand-induced substrate steering and reshaping of [ag2(h)]+ scaffold for selective co2 extrusion from formic acid
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/5c9942ddd8b84c90bbfe868edef555cf
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