Liu Shujuan, Li Teng, Shi Feng, Ma Haiying, Wang Bin, Dai Xingchao, Cui Xinjiang
State Key Laboratory for Oxo Synthesis and Selective Oxidation, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, No. 18, Tianshui Middle Road, Lanzhou, 730000, China.
University of Chinese Academy of Sciences, No. 19A, Yuquan Road, Beijing, 100049, China.
Nat Commun. 2023 Aug 17;14(1):4973. doi: 10.1038/s41467-023-40640-z.
Surface engineering is a promising strategy to improve the catalytic activities of heterogeneous catalysts. Nevertheless, few studies have been devoted to investigate the catalytic behavior differences of the multiple metal active sites triggered by the surface imperfections on catalysis. Herein, oxygen vacancies induced FeO catalyst are demonstrated with different Fe sites around one oxygen vacancy and exhibited significant catalytic performance for the carbonylation of various aryl halides and amines/alcohols with CO. The developed catalytic system displays excellent activity, selectivity, and reusability for the synthesis of carbonylated chemicals, including drugs and chiral molecules, via aminocarbonylation and alkoxycarbonylation. Combined characterizations disclose the formation of oxygen vacancies. Control experiments and density functional theory calculations demonstrate the selective combination of the three Fe sites is vital to improve the catalytic performance by catalyzing the elemental steps of PhI activation, CO insertion and C-N/C-O coupling respectively, endowing combinatorial sites catalyst for multistep reactions.
表面工程是一种改善多相催化剂催化活性的很有前景的策略。然而,很少有研究致力于探究由表面缺陷引发的多个金属活性位点在催化作用上的行为差异。在此,展示了由氧空位诱导的FeO催化剂,其在一个氧空位周围具有不同的铁位点,并对各种芳基卤化物与胺/醇与CO的羰基化反应表现出显著的催化性能。所开发的催化体系在通过氨基羰基化和烷氧基羰基化合成羰基化化学品(包括药物和手性分子)方面表现出优异的活性、选择性和可重复使用性。联合表征揭示了氧空位的形成。对照实验和密度泛函理论计算表明,三个铁位点的选择性组合对于通过分别催化PhI活化、CO插入和C-N/C-O偶联的基本步骤来提高催化性能至关重要,赋予了组合位点催化剂用于多步反应的能力。