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A 2D/2D heterojunction of ultrathin Pd nanosheet/MXene towards highly efficient methanol oxidation reaction: the significance of 2D material nanoarchitectonics

Two-dimensional (2D) Pd nanosheet-based catalysts have recently garnered widespread attention due to their high atom utilization efficiency. However, their catalytic ability and structural stability still require significant enhancement before they can be widely applied. In this study, we presented...

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Autores principales: Huang, Huajie, Xiao, Di, Zhu, Zihan, Zhang, Chi, Yang, Lu, He, Haiyan, You, Jungmok, Jiang, Quanguo, Xu, Xingtao, Yamauchi, Yusuke
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10510762/
https://www.ncbi.nlm.nih.gov/pubmed/37736638
http://dx.doi.org/10.1039/d3sc03735e
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author Huang, Huajie
Xiao, Di
Zhu, Zihan
Zhang, Chi
Yang, Lu
He, Haiyan
You, Jungmok
Jiang, Quanguo
Xu, Xingtao
Yamauchi, Yusuke
author_facet Huang, Huajie
Xiao, Di
Zhu, Zihan
Zhang, Chi
Yang, Lu
He, Haiyan
You, Jungmok
Jiang, Quanguo
Xu, Xingtao
Yamauchi, Yusuke
author_sort Huang, Huajie
collection PubMed
description Two-dimensional (2D) Pd nanosheet-based catalysts have recently garnered widespread attention due to their high atom utilization efficiency. However, their catalytic ability and structural stability still require significant enhancement before they can be widely applied. In this study, we presented the rational design and controllable fabrication of a novel 2D/2D heterojunction, which consists of ultrathin Pd nanosheets (NSs) grown on the Ti(3)C(2)T(x) MXene surface (Pd NSs/MXene). This heterostructure was achieved through a robust and convenient stereo-assembly strategy. The newly developed Pd NSs/MXene heterojunction not only provides numerous exposed active Pd atoms with an optimized electronic structure but also enables an intimate Pd/MXene interfacial interaction, ensuring a stable hybrid configuration. Consequently, the resulting Pd NSs/MXene heterojunction exhibits exceptional methanol oxidation properties. It possesses a large electrochemically active surface area, high mass and specific activities, and a long operating life, which are significantly superior to those of traditional Pd nanoparticle/carbon and Pd nanosheet/carbon catalysts. Theoretical simulations further reveal strong electronic interactions between the Pd nanosheet and MXene, which dramatically enhance the adsorption energy of the Pd component and simultaneously lower its d-band center. As a result, the Pd NSs/MXene heterojunction is less susceptible to CO poisoning. This work introduces a new 2D/2D heterojunction based on MXene and noble metallic materials and holds significance for the development of other novel heterojunctions, particularly within the realm of 2D material nanoarchitectonics.
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spelling pubmed-105107622023-09-21 A 2D/2D heterojunction of ultrathin Pd nanosheet/MXene towards highly efficient methanol oxidation reaction: the significance of 2D material nanoarchitectonics Huang, Huajie Xiao, Di Zhu, Zihan Zhang, Chi Yang, Lu He, Haiyan You, Jungmok Jiang, Quanguo Xu, Xingtao Yamauchi, Yusuke Chem Sci Chemistry Two-dimensional (2D) Pd nanosheet-based catalysts have recently garnered widespread attention due to their high atom utilization efficiency. However, their catalytic ability and structural stability still require significant enhancement before they can be widely applied. In this study, we presented the rational design and controllable fabrication of a novel 2D/2D heterojunction, which consists of ultrathin Pd nanosheets (NSs) grown on the Ti(3)C(2)T(x) MXene surface (Pd NSs/MXene). This heterostructure was achieved through a robust and convenient stereo-assembly strategy. The newly developed Pd NSs/MXene heterojunction not only provides numerous exposed active Pd atoms with an optimized electronic structure but also enables an intimate Pd/MXene interfacial interaction, ensuring a stable hybrid configuration. Consequently, the resulting Pd NSs/MXene heterojunction exhibits exceptional methanol oxidation properties. It possesses a large electrochemically active surface area, high mass and specific activities, and a long operating life, which are significantly superior to those of traditional Pd nanoparticle/carbon and Pd nanosheet/carbon catalysts. Theoretical simulations further reveal strong electronic interactions between the Pd nanosheet and MXene, which dramatically enhance the adsorption energy of the Pd component and simultaneously lower its d-band center. As a result, the Pd NSs/MXene heterojunction is less susceptible to CO poisoning. This work introduces a new 2D/2D heterojunction based on MXene and noble metallic materials and holds significance for the development of other novel heterojunctions, particularly within the realm of 2D material nanoarchitectonics. The Royal Society of Chemistry 2023-09-04 /pmc/articles/PMC10510762/ /pubmed/37736638 http://dx.doi.org/10.1039/d3sc03735e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Huang, Huajie
Xiao, Di
Zhu, Zihan
Zhang, Chi
Yang, Lu
He, Haiyan
You, Jungmok
Jiang, Quanguo
Xu, Xingtao
Yamauchi, Yusuke
A 2D/2D heterojunction of ultrathin Pd nanosheet/MXene towards highly efficient methanol oxidation reaction: the significance of 2D material nanoarchitectonics
title A 2D/2D heterojunction of ultrathin Pd nanosheet/MXene towards highly efficient methanol oxidation reaction: the significance of 2D material nanoarchitectonics
title_full A 2D/2D heterojunction of ultrathin Pd nanosheet/MXene towards highly efficient methanol oxidation reaction: the significance of 2D material nanoarchitectonics
title_fullStr A 2D/2D heterojunction of ultrathin Pd nanosheet/MXene towards highly efficient methanol oxidation reaction: the significance of 2D material nanoarchitectonics
title_full_unstemmed A 2D/2D heterojunction of ultrathin Pd nanosheet/MXene towards highly efficient methanol oxidation reaction: the significance of 2D material nanoarchitectonics
title_short A 2D/2D heterojunction of ultrathin Pd nanosheet/MXene towards highly efficient methanol oxidation reaction: the significance of 2D material nanoarchitectonics
title_sort 2d/2d heterojunction of ultrathin pd nanosheet/mxene towards highly efficient methanol oxidation reaction: the significance of 2d material nanoarchitectonics
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10510762/
https://www.ncbi.nlm.nih.gov/pubmed/37736638
http://dx.doi.org/10.1039/d3sc03735e
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