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A PtPdCoCuNi high-entropy alloy nanocatalyst for the hydrogenation of nitrobenzene

High-entropy alloys (HEAs) with multiple elements in near-equiatomic proportions hold great promise in heterogeneous catalysis because of their exceptional physicochemical properties governed by synergy. Herein, we prepared PtPdCoCuNi HEA nanoparticles via a one-step colloid-based route and tested t...

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Autores principales: Lu, Fagui, Lu, Kuan, Zhao, Gui, Zhou, Song, He, Bowen, Zhang, Yixiao, Xu, Jian, Li, Yongwang, Liu, Xi, Chen, Liwei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9260516/
https://www.ncbi.nlm.nih.gov/pubmed/35865192
http://dx.doi.org/10.1039/d2ra03145k
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author Lu, Fagui
Lu, Kuan
Zhao, Gui
Zhou, Song
He, Bowen
Zhang, Yixiao
Xu, Jian
Li, Yongwang
Liu, Xi
Chen, Liwei
author_facet Lu, Fagui
Lu, Kuan
Zhao, Gui
Zhou, Song
He, Bowen
Zhang, Yixiao
Xu, Jian
Li, Yongwang
Liu, Xi
Chen, Liwei
author_sort Lu, Fagui
collection PubMed
description High-entropy alloys (HEAs) with multiple elements in near-equiatomic proportions hold great promise in heterogeneous catalysis because of their exceptional physicochemical properties governed by synergy. Herein, we prepared PtPdCoCuNi HEA nanoparticles via a one-step colloid-based route and tested their catalytic performance for nitrobenzene hydrogenation to aniline. The SiO(2) supported PtPdCoCuNi displays 93.9% yield of aniline at 80 °C, which is 2.11 times that of PtPd/SiO(2). Even at room temperature, a 47.4% yield of aniline is attained with the PtPdCoCuNi/SiO(2) catalyst. DRIFTS experiments indicate formation of isolated Pt and Pd sites after alloying the transition metals and evidence a stronger interaction between the HEA catalyst and nitrobenzene. Both XPS data and DFT calculations disclose charge transfer to Pt and Pd species, which eventually enhance the interaction between nitrobenzene and the isolated metal sites and the hydrogenation activity as well. The experimental and theoretical results shed light on mechanistic understanding of the unique catalytic performance of the HEA nanocatalyst and pave a new avenue to realize the high catalytic performance of nitrobenzene hydrogenation over well-isolated noble metal sites with specific geometries.
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spelling pubmed-92605162022-07-20 A PtPdCoCuNi high-entropy alloy nanocatalyst for the hydrogenation of nitrobenzene Lu, Fagui Lu, Kuan Zhao, Gui Zhou, Song He, Bowen Zhang, Yixiao Xu, Jian Li, Yongwang Liu, Xi Chen, Liwei RSC Adv Chemistry High-entropy alloys (HEAs) with multiple elements in near-equiatomic proportions hold great promise in heterogeneous catalysis because of their exceptional physicochemical properties governed by synergy. Herein, we prepared PtPdCoCuNi HEA nanoparticles via a one-step colloid-based route and tested their catalytic performance for nitrobenzene hydrogenation to aniline. The SiO(2) supported PtPdCoCuNi displays 93.9% yield of aniline at 80 °C, which is 2.11 times that of PtPd/SiO(2). Even at room temperature, a 47.4% yield of aniline is attained with the PtPdCoCuNi/SiO(2) catalyst. DRIFTS experiments indicate formation of isolated Pt and Pd sites after alloying the transition metals and evidence a stronger interaction between the HEA catalyst and nitrobenzene. Both XPS data and DFT calculations disclose charge transfer to Pt and Pd species, which eventually enhance the interaction between nitrobenzene and the isolated metal sites and the hydrogenation activity as well. The experimental and theoretical results shed light on mechanistic understanding of the unique catalytic performance of the HEA nanocatalyst and pave a new avenue to realize the high catalytic performance of nitrobenzene hydrogenation over well-isolated noble metal sites with specific geometries. The Royal Society of Chemistry 2022-07-07 /pmc/articles/PMC9260516/ /pubmed/35865192 http://dx.doi.org/10.1039/d2ra03145k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Lu, Fagui
Lu, Kuan
Zhao, Gui
Zhou, Song
He, Bowen
Zhang, Yixiao
Xu, Jian
Li, Yongwang
Liu, Xi
Chen, Liwei
A PtPdCoCuNi high-entropy alloy nanocatalyst for the hydrogenation of nitrobenzene
title A PtPdCoCuNi high-entropy alloy nanocatalyst for the hydrogenation of nitrobenzene
title_full A PtPdCoCuNi high-entropy alloy nanocatalyst for the hydrogenation of nitrobenzene
title_fullStr A PtPdCoCuNi high-entropy alloy nanocatalyst for the hydrogenation of nitrobenzene
title_full_unstemmed A PtPdCoCuNi high-entropy alloy nanocatalyst for the hydrogenation of nitrobenzene
title_short A PtPdCoCuNi high-entropy alloy nanocatalyst for the hydrogenation of nitrobenzene
title_sort ptpdcocuni high-entropy alloy nanocatalyst for the hydrogenation of nitrobenzene
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9260516/
https://www.ncbi.nlm.nih.gov/pubmed/35865192
http://dx.doi.org/10.1039/d2ra03145k
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