中文版 | English
Title

Kinetic diffusion-controlled synthesis of twinned intermetallic nanocrystals for CO-resistant catalysis

Author
Corresponding AuthorWang,Yang Gang; Yang,Feng
Joint first authorWang,Kun; Wang,Lei; Yao,Zhen; Zhang,Lei
Publication Years
2022-06-24
DOI
Source Title
ISSN
2375-2548
EISSN
2375-2548
Volume8Issue:25Pages:abo4599
Abstract

Intermetallic catalysts are of immense interest, but how heterometals diffuse and related interface structure remain unclear when there exists a strong metal-support interaction. Here, we developed a kinetic diffusion-controlled method and synthesized intermetallic Pt2Mo nanocrystals with twin boundaries on mesoporous carbon (Pt2Mo/C). The formation of small-sized twinned intermetallic nanocrystals is associated with the strong Mo-C interaction-induced slow Mo diffusion and the heterogeneity of alloying, which is revealed by an in situ aberration-corrected transmission electron microscope (TEM) at high temperature. The twinned Pt2Mo/C constitutes a promising CO-resistant catalyst for highly selective hydrogenation of nitroarenes. Theoretical calculations and environmental TEM suggest that the weakened CO adsorption over Pt sites of Pt2Mo twin boundaries and their local region endows them with high CO resistance, selectivity, and reusability. The present strategy paves the way for tailoring the interface structure of high-melting point Mo/W-based intermetallic nanocrystals that proved to be important for the industrially viable reactions.

Degree Discipline
理学::化学
URL[Source Record]
Indexed By
SCI ; EI
Language
English
Important Publications
NI Journal Papers
SUSTech Authorship
First ; 共同第一 ; Corresponding
Funding Project
National Natural Science Foundation of China (NSFC)[92161124,52002165] ; National Key Research and Development Program of China[2021YFA0717400] ; Shenzhen Basic Research Project[JCYJ20210324104808022] ; Beijing National Laboratory for Molecular Sciences[BNLMS202013] ; Guangdong Provincial Natural Science Foundation[2021A1515010229] ; Innovation Project for Guangdong Provincial Department of Education[2019KTSCX155] ; Guangdong Provincial Key Laboratory of Catalysis[2020B121201002] ; NSFC[22022504] ; Guangdong
WOS Research Area
Science & Technology - Other Topics
WOS Subject
Multidisciplinary Sciences
WOS Accession No
WOS:000814518800019
Publisher
EI Accession Number
20222712308487
EI Keywords
Binary alloys ; Catalysts ; Diffusion ; Reusability ; Transmission electron microscopy
ESI Classification Code
Metallurgy:531.1 ; Chemical Agents and Basic Industrial Chemicals:803 ; Chemical Products Generally:804
Scopus EID
2-s2.0-85132619476
Data Source
Scopus
Publication Status
正式出版
Citation statistics
Cited Times [WOS]:10
Document TypeJournal Article
Identifierhttp://kc.sustech.edu.cn/handle/2SGJ60CL/343318
DepartmentDepartment of Chemistry
Affiliation
1.Department of Chemistry,Guangdong Provincial Key Laboratory of Catalysis,Southern University of Science and Technology,Shenzhen,518055,China
2.Beijing National Laboratory for Molecular Science,Key Laboratory for the Physics and Chemistry of Nanodevices,State Key Laboratory of Rare Earth Materials Chemistry and Applications,College of Chemistry and Molecular Engineering,Peking University,100871,China
3.Peking University Shenzhen Institute,Shenzhen,518057,China
4.PKU-HKUST Shenzhen-Hong Kong Institution,Shenzhen,518055,China
First Author AffilicationDepartment of Chemistry
Corresponding Author AffilicationDepartment of Chemistry
First Author's First AffilicationDepartment of Chemistry
Recommended Citation
GB/T 7714
Wang,Kun,Wang,Lei,Yao,Zhen,et al. Kinetic diffusion-controlled synthesis of twinned intermetallic nanocrystals for CO-resistant catalysis[J]. Science Advances,2022,8(25):abo4599.
APA
Wang,Kun.,Wang,Lei.,Yao,Zhen.,Zhang,Lei.,Zhang,Luyao.,...&Yang,Feng.(2022).Kinetic diffusion-controlled synthesis of twinned intermetallic nanocrystals for CO-resistant catalysis.Science Advances,8(25),abo4599.
MLA
Wang,Kun,et al."Kinetic diffusion-controlled synthesis of twinned intermetallic nanocrystals for CO-resistant catalysis".Science Advances 8.25(2022):abo4599.
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