| Literature DB >> 35107999 |
Yuchen Deng1, Yu Guo1, Zhimin Jia2,3, Jin-Cheng Liu4, Jinqiu Guo5, Xiangbin Cai6, Chunyang Dong1, Meng Wang1, Chengyu Li1, Jiangyong Diao3, Zheng Jiang7, Jinglin Xie1, Ning Wang6, Hai Xiao4, Bingjun Xu1, Hongbo Zhang5, Hongyang Liu2,3, Jun Li4,8, Ding Ma1.
Abstract
Identification of catalytic active sites is pivotal in the design of highly effective heterogeneous metal catalysts, especially for structure-sensitive reactions. Downsizing the dimension of the metal species on the catalyst increases the dispersion, which is maximized when the metal exists as single atoms, namely, single-atom catalysts (SACs). SACs have been reported to be efficient for various catalytic reactions. We show here that the Pt SACs, although with the highest metal atom utilization efficiency, are totally inactive in the cyclohexane (C6H12) dehydrogenation reaction, an important reaction that could enable efficient hydrogen transportation. Instead, catalysts enriched with fully exposed few-atom Pt ensembles, with a Pt-Pt coordination number of around 2, achieve the optimal catalytic performance. The superior performance of a fully exposed few-atom ensemble catalyst is attributed to its high d-band center, multiple neighboring metal sites, and weak binding of the product.Entities:
Year: 2022 PMID: 35107999 DOI: 10.1021/jacs.1c12261
Source DB: PubMed Journal: J Am Chem Soc ISSN: 0002-7863 Impact factor: 15.419