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Highly Efficient Additive-Free Dehydrogenation of Neat Formic Acid

Formic acid (FA) is a promising hydrogen carrier which can play an instrumental role in the overall implementation of a hydrogen economy. In this regard, it is important to generate H(2) gas from neat FA without any solvent/additive, for which existing systems are scarce. Here we report the remarkab...

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Autores principales: Kar, Sayan, Rauch, Michael, Leitus, Gregory, Ben-David, Yehoshoa, Milstein, David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7614505/
https://www.ncbi.nlm.nih.gov/pubmed/37152186
http://dx.doi.org/10.1038/s41929-021-00575-4
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author Kar, Sayan
Rauch, Michael
Leitus, Gregory
Ben-David, Yehoshoa
Milstein, David
author_facet Kar, Sayan
Rauch, Michael
Leitus, Gregory
Ben-David, Yehoshoa
Milstein, David
author_sort Kar, Sayan
collection PubMed
description Formic acid (FA) is a promising hydrogen carrier which can play an instrumental role in the overall implementation of a hydrogen economy. In this regard, it is important to generate H(2) gas from neat FA without any solvent/additive, for which existing systems are scarce. Here we report the remarkable catalytic activity of a ruthenium 9H-acridine pincer complex for this process. The catalyst is unusually stable and robust in FA even at high temperatures and can catalyse neat FA dehydrogenation for over a month, with a total turnover number of 1,701,150, while also generating high H(2)/CO(2) gas pressures (tested up to 100 bars). Mechanistic investigations and DFT studies are conducted to fully understand the molecular mechanism to the process. Overall, the high activity, stability, selectivity, simplicity and versatility of the system to generate a CO-free H(2)/CO(2) gas stream and high pressure from neat FA makes it promising for large-scale implementation.
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spelling pubmed-76145052023-05-04 Highly Efficient Additive-Free Dehydrogenation of Neat Formic Acid Kar, Sayan Rauch, Michael Leitus, Gregory Ben-David, Yehoshoa Milstein, David Nat Catal Article Formic acid (FA) is a promising hydrogen carrier which can play an instrumental role in the overall implementation of a hydrogen economy. In this regard, it is important to generate H(2) gas from neat FA without any solvent/additive, for which existing systems are scarce. Here we report the remarkable catalytic activity of a ruthenium 9H-acridine pincer complex for this process. The catalyst is unusually stable and robust in FA even at high temperatures and can catalyse neat FA dehydrogenation for over a month, with a total turnover number of 1,701,150, while also generating high H(2)/CO(2) gas pressures (tested up to 100 bars). Mechanistic investigations and DFT studies are conducted to fully understand the molecular mechanism to the process. Overall, the high activity, stability, selectivity, simplicity and versatility of the system to generate a CO-free H(2)/CO(2) gas stream and high pressure from neat FA makes it promising for large-scale implementation. 2021-03 2021-02-22 /pmc/articles/PMC7614505/ /pubmed/37152186 http://dx.doi.org/10.1038/s41929-021-00575-4 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Kar, Sayan
Rauch, Michael
Leitus, Gregory
Ben-David, Yehoshoa
Milstein, David
Highly Efficient Additive-Free Dehydrogenation of Neat Formic Acid
title Highly Efficient Additive-Free Dehydrogenation of Neat Formic Acid
title_full Highly Efficient Additive-Free Dehydrogenation of Neat Formic Acid
title_fullStr Highly Efficient Additive-Free Dehydrogenation of Neat Formic Acid
title_full_unstemmed Highly Efficient Additive-Free Dehydrogenation of Neat Formic Acid
title_short Highly Efficient Additive-Free Dehydrogenation of Neat Formic Acid
title_sort highly efficient additive-free dehydrogenation of neat formic acid
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7614505/
https://www.ncbi.nlm.nih.gov/pubmed/37152186
http://dx.doi.org/10.1038/s41929-021-00575-4
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