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Synergistic Effect of Pt and Dual Ni/Co Cations in Hydrotalcite-Derived Pt/Ni(1.5)Co(0.5)AlO Catalysts for Promoting Soot Combustion

In this article, the catalysts of hydrotalcite-derived Ni(1.5)Co(0.5)AlO nanosheet-supported highly dispersed Pt nanoparticles (Pt(n)/Ni(1.5)Co(0.5)AlO, where n% is the weigh percentage of the Pt element in the catalysts) were elaborately fabricated by the gas-bubble-assisted membrane--reduction met...

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Autores principales: Zhang, Yilin, Zhang, Peng, Xiong, Jing, Li, Yuanfeng, Ma, Yaxiao, Zhang, Sicheng, Zhao, Zhen, Liu, Jian, Wei, Yuechang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9965507/
https://www.ncbi.nlm.nih.gov/pubmed/36838991
http://dx.doi.org/10.3390/nano13040623
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author Zhang, Yilin
Zhang, Peng
Xiong, Jing
Li, Yuanfeng
Ma, Yaxiao
Zhang, Sicheng
Zhao, Zhen
Liu, Jian
Wei, Yuechang
author_facet Zhang, Yilin
Zhang, Peng
Xiong, Jing
Li, Yuanfeng
Ma, Yaxiao
Zhang, Sicheng
Zhao, Zhen
Liu, Jian
Wei, Yuechang
author_sort Zhang, Yilin
collection PubMed
description In this article, the catalysts of hydrotalcite-derived Ni(1.5)Co(0.5)AlO nanosheet-supported highly dispersed Pt nanoparticles (Pt(n)/Ni(1.5)Co(0.5)AlO, where n% is the weigh percentage of the Pt element in the catalysts) were elaborately fabricated by the gas-bubble-assisted membrane--reduction method. The specific porous structure formed by the stack of hydrotalcite-derived Ni(1.5)Co(0.5)AlO nanosheets can increase the transfer mass efficiency of the reactants (O(2), NO, and soot) and the strong Pt–Ni(1.5)Co(0.5)AlO interaction can weaken the Ni/Co-O bond for promoting the mobility of lattice oxygen and the formation of surface-oxygen vacancies. The Pt(n)/Ni(1.5)Co(0.5)AlO catalysts exhibited excellent catalytic activity and stability during diesel soot combustion under the loose contact mode between soot particles and catalysts. Among all the catalysts, the Pt(2)/Ni(1.5)Co(0.5)AlO catalyst showed the highest catalytic activities for soot combustion (T(50) = 350 °C, TOF = 6.63 × 10(−3) s(−1)). Based on the characterization results, the catalytic mechanism for soot combustion is proposed: the synergistic effect of Pt and dual Ni/Co cations in the Pt/Ni(1.5)Co(0.5)AlO catalysts can promote the vital step of catalyzing NO oxidation to NO(2) in the NO-assisted soot oxidation mechanism. This insight into the synergistic effect of Pt and dual Ni/Co cations for soot combustion provides new strategies for reducing the amounts of noble metals in high-efficient catalysts.
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spelling pubmed-99655072023-02-26 Synergistic Effect of Pt and Dual Ni/Co Cations in Hydrotalcite-Derived Pt/Ni(1.5)Co(0.5)AlO Catalysts for Promoting Soot Combustion Zhang, Yilin Zhang, Peng Xiong, Jing Li, Yuanfeng Ma, Yaxiao Zhang, Sicheng Zhao, Zhen Liu, Jian Wei, Yuechang Nanomaterials (Basel) Article In this article, the catalysts of hydrotalcite-derived Ni(1.5)Co(0.5)AlO nanosheet-supported highly dispersed Pt nanoparticles (Pt(n)/Ni(1.5)Co(0.5)AlO, where n% is the weigh percentage of the Pt element in the catalysts) were elaborately fabricated by the gas-bubble-assisted membrane--reduction method. The specific porous structure formed by the stack of hydrotalcite-derived Ni(1.5)Co(0.5)AlO nanosheets can increase the transfer mass efficiency of the reactants (O(2), NO, and soot) and the strong Pt–Ni(1.5)Co(0.5)AlO interaction can weaken the Ni/Co-O bond for promoting the mobility of lattice oxygen and the formation of surface-oxygen vacancies. The Pt(n)/Ni(1.5)Co(0.5)AlO catalysts exhibited excellent catalytic activity and stability during diesel soot combustion under the loose contact mode between soot particles and catalysts. Among all the catalysts, the Pt(2)/Ni(1.5)Co(0.5)AlO catalyst showed the highest catalytic activities for soot combustion (T(50) = 350 °C, TOF = 6.63 × 10(−3) s(−1)). Based on the characterization results, the catalytic mechanism for soot combustion is proposed: the synergistic effect of Pt and dual Ni/Co cations in the Pt/Ni(1.5)Co(0.5)AlO catalysts can promote the vital step of catalyzing NO oxidation to NO(2) in the NO-assisted soot oxidation mechanism. This insight into the synergistic effect of Pt and dual Ni/Co cations for soot combustion provides new strategies for reducing the amounts of noble metals in high-efficient catalysts. MDPI 2023-02-04 /pmc/articles/PMC9965507/ /pubmed/36838991 http://dx.doi.org/10.3390/nano13040623 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhang, Yilin
Zhang, Peng
Xiong, Jing
Li, Yuanfeng
Ma, Yaxiao
Zhang, Sicheng
Zhao, Zhen
Liu, Jian
Wei, Yuechang
Synergistic Effect of Pt and Dual Ni/Co Cations in Hydrotalcite-Derived Pt/Ni(1.5)Co(0.5)AlO Catalysts for Promoting Soot Combustion
title Synergistic Effect of Pt and Dual Ni/Co Cations in Hydrotalcite-Derived Pt/Ni(1.5)Co(0.5)AlO Catalysts for Promoting Soot Combustion
title_full Synergistic Effect of Pt and Dual Ni/Co Cations in Hydrotalcite-Derived Pt/Ni(1.5)Co(0.5)AlO Catalysts for Promoting Soot Combustion
title_fullStr Synergistic Effect of Pt and Dual Ni/Co Cations in Hydrotalcite-Derived Pt/Ni(1.5)Co(0.5)AlO Catalysts for Promoting Soot Combustion
title_full_unstemmed Synergistic Effect of Pt and Dual Ni/Co Cations in Hydrotalcite-Derived Pt/Ni(1.5)Co(0.5)AlO Catalysts for Promoting Soot Combustion
title_short Synergistic Effect of Pt and Dual Ni/Co Cations in Hydrotalcite-Derived Pt/Ni(1.5)Co(0.5)AlO Catalysts for Promoting Soot Combustion
title_sort synergistic effect of pt and dual ni/co cations in hydrotalcite-derived pt/ni(1.5)co(0.5)alo catalysts for promoting soot combustion
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9965507/
https://www.ncbi.nlm.nih.gov/pubmed/36838991
http://dx.doi.org/10.3390/nano13040623
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