催化作用
煅烧
协调数
反应性(心理学)
Atom(片上系统)
材料科学
结晶学
纳米技术
化学
离子
计算机科学
有机化学
医学
病理
嵌入式系统
替代医学
作者
Wei Tan,Shaohua Xie,Duy Le,Weijian Diao,Meiyu Wang,Ke-Bin Low,Dave Austin,Sampyo Hong,Fei Gao,Lin Dong,Lu Ma,Steven N. Ehrlich,Talat S. Rahman,Fudong Liu
标识
DOI:10.1038/s41467-022-34797-2
摘要
Constructing single atom catalysts with fine-tuned coordination environments can be a promising strategy to achieve satisfactory catalytic performance. Herein, via a simple calcination temperature-control strategy, CeO2 supported Pt single atom catalysts with precisely controlled coordination environments are successfully fabricated. The joint experimental and theoretical analysis reveals that the Pt single atoms on Pt1/CeO2 prepared at 550 °C (Pt/CeO2-550) are mainly located at the edge sites of CeO2 with a Pt-O coordination number of ca. 5, while those prepared at 800 °C (Pt/CeO2-800) are predominantly located at distorted Ce substitution sites on CeO2 terrace with a Pt-O coordination number of ca. 4. Pt/CeO2-550 and Pt/CeO2-800 with different Pt1-CeO2 coordination environments exhibit a reversal of activity trend in CO oxidation and NH3 oxidation due to their different privileges in reactants activation and H2O desorption, suggesting that the catalytic performance of Pt single atom catalysts in different target reactions can be maximized by optimizing their local coordination structures.
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