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A Selective Copper Based Oxygen Reduction Catalyst for the Electrochemical Synthesis of H(2)O(2) at Neutral pH

H(2)O(2) is a bulk chemical used as “green” alternative in a variety of applications, but has an energy and waste intensive production method. The electrochemical O(2) reduction to H(2)O(2) is viable alternative with examples of the direct production of up to 20% H(2)O(2) solutions. In that respect,...

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Autores principales: van Dijk, Bas, Kinders, Rick, Ferber, Thimo H., Hofmann, Jan P., Hetterscheid, Dennis G. H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9305592/
https://www.ncbi.nlm.nih.gov/pubmed/35911791
http://dx.doi.org/10.1002/celc.202101692
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author van Dijk, Bas
Kinders, Rick
Ferber, Thimo H.
Hofmann, Jan P.
Hetterscheid, Dennis G. H.
author_facet van Dijk, Bas
Kinders, Rick
Ferber, Thimo H.
Hofmann, Jan P.
Hetterscheid, Dennis G. H.
author_sort van Dijk, Bas
collection PubMed
description H(2)O(2) is a bulk chemical used as “green” alternative in a variety of applications, but has an energy and waste intensive production method. The electrochemical O(2) reduction to H(2)O(2) is viable alternative with examples of the direct production of up to 20% H(2)O(2) solutions. In that respect, we found that the dinuclear complex Cu(2)(btmpa) (6,6’‐bis[[bis(2‐pyridylmethyl)amino]methyl]‐2,2’‐bipyridine) reduces O(2) to H(2)O(2) with a selectivity up to 90 % according to single linear sweep rotating ring disk electrode measurements. Microbalance experiments showed that complex reduction leads to surface adsorption thereby increasing the catalytic current. More importantly, we kept a high Faradaic efficiency for H(2)O(2) between 60 and 70 % over the course of 2 h of amperometry by introducing high potential intervals to strip deposited copper ((dep)Cu). This is the first example of extensive studies into the long term electrochemical O(2) to H(2)O(2) reduction by a molecular complex which allowed to retain the high intrinsic selectivity of Cu(2)(btmpa) towards H(2)O(2) production leading to relevant levels of H(2)O(2).
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spelling pubmed-93055922022-07-28 A Selective Copper Based Oxygen Reduction Catalyst for the Electrochemical Synthesis of H(2)O(2) at Neutral pH van Dijk, Bas Kinders, Rick Ferber, Thimo H. Hofmann, Jan P. Hetterscheid, Dennis G. H. ChemElectroChem Research Articles H(2)O(2) is a bulk chemical used as “green” alternative in a variety of applications, but has an energy and waste intensive production method. The electrochemical O(2) reduction to H(2)O(2) is viable alternative with examples of the direct production of up to 20% H(2)O(2) solutions. In that respect, we found that the dinuclear complex Cu(2)(btmpa) (6,6’‐bis[[bis(2‐pyridylmethyl)amino]methyl]‐2,2’‐bipyridine) reduces O(2) to H(2)O(2) with a selectivity up to 90 % according to single linear sweep rotating ring disk electrode measurements. Microbalance experiments showed that complex reduction leads to surface adsorption thereby increasing the catalytic current. More importantly, we kept a high Faradaic efficiency for H(2)O(2) between 60 and 70 % over the course of 2 h of amperometry by introducing high potential intervals to strip deposited copper ((dep)Cu). This is the first example of extensive studies into the long term electrochemical O(2) to H(2)O(2) reduction by a molecular complex which allowed to retain the high intrinsic selectivity of Cu(2)(btmpa) towards H(2)O(2) production leading to relevant levels of H(2)O(2). John Wiley and Sons Inc. 2022-02-02 2022-02-11 /pmc/articles/PMC9305592/ /pubmed/35911791 http://dx.doi.org/10.1002/celc.202101692 Text en © 2022 The Authors. ChemElectroChem published by Wiley-VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
van Dijk, Bas
Kinders, Rick
Ferber, Thimo H.
Hofmann, Jan P.
Hetterscheid, Dennis G. H.
A Selective Copper Based Oxygen Reduction Catalyst for the Electrochemical Synthesis of H(2)O(2) at Neutral pH
title A Selective Copper Based Oxygen Reduction Catalyst for the Electrochemical Synthesis of H(2)O(2) at Neutral pH
title_full A Selective Copper Based Oxygen Reduction Catalyst for the Electrochemical Synthesis of H(2)O(2) at Neutral pH
title_fullStr A Selective Copper Based Oxygen Reduction Catalyst for the Electrochemical Synthesis of H(2)O(2) at Neutral pH
title_full_unstemmed A Selective Copper Based Oxygen Reduction Catalyst for the Electrochemical Synthesis of H(2)O(2) at Neutral pH
title_short A Selective Copper Based Oxygen Reduction Catalyst for the Electrochemical Synthesis of H(2)O(2) at Neutral pH
title_sort selective copper based oxygen reduction catalyst for the electrochemical synthesis of h(2)o(2) at neutral ph
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9305592/
https://www.ncbi.nlm.nih.gov/pubmed/35911791
http://dx.doi.org/10.1002/celc.202101692
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