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Decreasing the coordinated N atoms in a single-atom Cu catalyst to achieve selective transfer hydrogenation of alkynes

Single-atom (SA) catalysts have attracted broad attention due to their distinctive catalytic properties in diverse reactions. Increasing the unsaturated coordination sites of active centers is a valid and challenging approach to improve the performance of such catalysts. Herein, we report an oxide c...

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Autores principales: Zhang, Xuge, Lin, He, Zhang, Jian, Qiu, Yajun, Zhang, Zedong, Xu, Qi, Meng, Ge, Yan, Wensheng, Gu, Lin, Zheng, Lirong, Wang, Dingsheng, Li, Yadong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8580059/
https://www.ncbi.nlm.nih.gov/pubmed/34881012
http://dx.doi.org/10.1039/d1sc04344g
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author Zhang, Xuge
Lin, He
Zhang, Jian
Qiu, Yajun
Zhang, Zedong
Xu, Qi
Meng, Ge
Yan, Wensheng
Gu, Lin
Zheng, Lirong
Wang, Dingsheng
Li, Yadong
author_facet Zhang, Xuge
Lin, He
Zhang, Jian
Qiu, Yajun
Zhang, Zedong
Xu, Qi
Meng, Ge
Yan, Wensheng
Gu, Lin
Zheng, Lirong
Wang, Dingsheng
Li, Yadong
author_sort Zhang, Xuge
collection PubMed
description Single-atom (SA) catalysts have attracted broad attention due to their distinctive catalytic properties in diverse reactions. Increasing the unsaturated coordination sites of active centers is a valid and challenging approach to improve the performance of such catalysts. Herein, we report an oxide compounding strategy to decrease the N coordination number of a SA Cu catalyst by reducing the thickness of the N-doped carbon carrier with a lower density of N atoms. The SA Cu catalyst with a more unsaturated N coordination structure can achieve transfer hydrogenation of alkynes with good activity and selectivity, which is disabled over the common N coordinated SA Cu catalyst on pure CN. It is found that individual Cu centers coordinated by fewer N atoms can accelerate the hydrogen transfer from ammonia–borane and still leave proper adsorption sites for alkynes to realize the entire hydrogenation reaction. This work will open up new opportunities to modulate the unsaturated coordination structure of SA catalysts for creating better-performing heterogeneous catalysts.
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spelling pubmed-85800592021-12-07 Decreasing the coordinated N atoms in a single-atom Cu catalyst to achieve selective transfer hydrogenation of alkynes Zhang, Xuge Lin, He Zhang, Jian Qiu, Yajun Zhang, Zedong Xu, Qi Meng, Ge Yan, Wensheng Gu, Lin Zheng, Lirong Wang, Dingsheng Li, Yadong Chem Sci Chemistry Single-atom (SA) catalysts have attracted broad attention due to their distinctive catalytic properties in diverse reactions. Increasing the unsaturated coordination sites of active centers is a valid and challenging approach to improve the performance of such catalysts. Herein, we report an oxide compounding strategy to decrease the N coordination number of a SA Cu catalyst by reducing the thickness of the N-doped carbon carrier with a lower density of N atoms. The SA Cu catalyst with a more unsaturated N coordination structure can achieve transfer hydrogenation of alkynes with good activity and selectivity, which is disabled over the common N coordinated SA Cu catalyst on pure CN. It is found that individual Cu centers coordinated by fewer N atoms can accelerate the hydrogen transfer from ammonia–borane and still leave proper adsorption sites for alkynes to realize the entire hydrogenation reaction. This work will open up new opportunities to modulate the unsaturated coordination structure of SA catalysts for creating better-performing heterogeneous catalysts. The Royal Society of Chemistry 2021-10-19 /pmc/articles/PMC8580059/ /pubmed/34881012 http://dx.doi.org/10.1039/d1sc04344g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Zhang, Xuge
Lin, He
Zhang, Jian
Qiu, Yajun
Zhang, Zedong
Xu, Qi
Meng, Ge
Yan, Wensheng
Gu, Lin
Zheng, Lirong
Wang, Dingsheng
Li, Yadong
Decreasing the coordinated N atoms in a single-atom Cu catalyst to achieve selective transfer hydrogenation of alkynes
title Decreasing the coordinated N atoms in a single-atom Cu catalyst to achieve selective transfer hydrogenation of alkynes
title_full Decreasing the coordinated N atoms in a single-atom Cu catalyst to achieve selective transfer hydrogenation of alkynes
title_fullStr Decreasing the coordinated N atoms in a single-atom Cu catalyst to achieve selective transfer hydrogenation of alkynes
title_full_unstemmed Decreasing the coordinated N atoms in a single-atom Cu catalyst to achieve selective transfer hydrogenation of alkynes
title_short Decreasing the coordinated N atoms in a single-atom Cu catalyst to achieve selective transfer hydrogenation of alkynes
title_sort decreasing the coordinated n atoms in a single-atom cu catalyst to achieve selective transfer hydrogenation of alkynes
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8580059/
https://www.ncbi.nlm.nih.gov/pubmed/34881012
http://dx.doi.org/10.1039/d1sc04344g
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