Fully-exposed Pt clusters stabilized on Sn-decorated nanodiamond/graphene hybrid support for efficient ethylbenzene direct dehydrogenation

被引:0
|
作者
Linlin Wang
Xuetao Qin
Ting Sun
Xiangbin Cai
Mi Peng
Zhimin Jia
Xiaowen Chen
Ning Wang
Jiangyong Diao
Hongyang Liu
Ding Ma
机构
[1] Northeastern University,Department of Chemistry
[2] Chinese Academy of Sciences,Shenyang National Laboratory for Materials Science, Institute of Metal Research
[3] Peking University,Beijing National Laboratory for Molecular Engineering, College of Chemistry and Molecular Engineering and College of Engineering, BIC
[4] Hong Kong University of Science and Technology,ESAT
[5] University of Science and Technology of China,Department of Physics
来源
Nano Research | 2022年 / 15卷
关键词
Pt cluster; ethylbenzene dehydrogenation; fully-exposed catalyst; heterogeneous catalysis;
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中图分类号
学科分类号
摘要
The pursuit of energy conservation and environmental protection has always been a hot topic in the catalytic fields, which is inseparable from the rational designing of efficient catalysts and an in-depth understanding of the catalytic reaction mechanism. In this work, fully-exposed Pt clusters were fabricated on the atomically dispersed Sn decorated nanodiamond/graphene (Sn-ND@G) hybrid support and employed for direct dehydrogenation (DDH) of ethylbenzene (EB) to styrene (ST). The detailed structural characterizations revealed the fully-exposed Pt clusters were stabilized on Sn-ND@G, assisted by the spatial separation of atomically dispersed Sn species. The as-prepared Pt/Sn-ND@G catalyst showed enhanced ST yield (136.2 molEB·molPt−1·h−1 EB conversion rate and 99.7% ST selectivity) and robust long-term stability at 500 °C for the EB DDH reaction, compared with the traditional ND@G supported Pt nanoparticle catalyst (Pt/ND@G). The ST prefers to desorb from the fully-exposed Pt clusters, resulting in the enhanced DDH catalytic performance of the Pt/Sn-ND@G catalyst. The present work paves a new way for designing highly dispersed and stable supported metal catalysts for DDH reactions.
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页码:10029 / 10036
页数:7
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