催化作用
选择性
纳米颗粒
氢溢流
材料科学
化学
硫黄
组合化学
氢
化学工程
纳米技术
有机化学
工程类
作者
Sai Zhang,Jie Gan,Zhaoming Xia,Xiao Chen,Yong Zou,Xuezhi Duan,Yongquan Qu
出处
期刊:Chem
[Elsevier]
日期:2020-11-01
卷期号:6 (11): 2994-3006
被引量:52
标识
DOI:10.1016/j.chempr.2020.07.023
摘要
Ideal heterogeneous metal hydrogenation catalysts are featured by simultaneously high activity, selectivity, and stability. Herein, we report a general yet powerful strategy to design and fabricate dual-active-sites [email protected] core-shell nanoparticle for boosting selective hydrogenation of various N-heteroarenes. It can break the limitation of scaling relation on traditional metal surfaces, and thus afford unprecedentedly high selectivity, activity, and stability. Combining kinetics analysis and DFT calculations with multiple techniques directly unveil that the critical porous carbon shell with a pore size of 0.53 nm not only allows H2 diffusion to Co sites for activation and blocks accessibility of N-heteroarenes but also catalyzes hydrogenation of N-heteroarenes via hydrogen spillover from Co sites. In addition, the presence of surface/subsurface carbon at the Co sites shows high anti-sulfur poisoning and anti-oxidant capability. This work is valuable for guiding the design and manipulation of cost-effective and robust hydrogenation catalysts.
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