催化作用
铑
Atom(片上系统)
氧化物
纳米颗粒
材料科学
贵金属
化学
烧结
氧气
化学工程
结晶学
纳米技术
有机化学
冶金
嵌入式系统
工程类
计算机科学
作者
Jing Xu,Ying Wang,Ke Wang,Meng Zhao,Rui Zhang,Wenjie Cui,Li Liu,Megalamane S. Bootharaju,Jeong Hyun Kim,Taeghwan Hyeon,Hongjie Zhang,Yu Wang,Shuyan Song,Xiao Wang
标识
DOI:10.1002/anie.202302877
摘要
Reducible oxide-supported noble metal nanoparticles exhibit high activity in catalyzing many important oxidation reactions. However, atom migration under harsh reaction conditions leads to deactivation of the catalyst. Meanwhile, single-atom catalysts demonstrate enhanced stability, but often suffer from poor catalytic activity owing to the ionized surface states. In this work, we simultaneously address the poor activity and stability issues by synthesizing highly active and durable rhodium (Rh) single-atom catalysts through a "wrap-bake-peel" process. The pre-coated SiO2 layer during synthesis of catalyst plays a crucial role in not only protecting CeO2 support against sintering, but also donating electron to weaken the Ce-O bond, producing highly loaded Rh single atoms on the CeO2 support exposed with high-index {210} facets. Benefiting from the unique electronic structure of CeO2 {210} facets, more oxygen vacancies are generated along with the deposition of more electropositive Rh single atoms, leading to remarkably improved catalytic performance in CO oxidation.
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