State Key Laboratory of Environmental Chemistry and Ecotoxicology , Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences , Beijing 100085 , China.
Department of Chemistry, Faculty of Material Sciences and Chemistry , China University of Geosciences , Wuhan 430074 , China.
Environ Sci Technol. 2018 Apr 3;52(7):4244-4255. doi: 10.1021/acs.est.7b05996. Epub 2018 Mar 21.
AuPd bimetallic nanocatalysts exhibit superior catalytic performance in the cleavage of carbon-halogen bonds (C-X) in the hazardous halogenated pollutants. A better understanding of how Au atoms promote the reactivity of Pd sites rather than vaguely interpreting as bimetallic effect and determining which type of Pd sites are necessary for these reactions are crucial factors for the design of atomically precise nanocatalysts that make full use of both the Pd and Au atoms. Herein, we systematically manipulated the coordination number of Pd-Pd, d-orbital occupation state, and the Au-Pd interface of the Pd reactive centers and studied the structure-activity relationship of Au-Pd in the catalyzed cleavage of C-X bonds. It is revealed that Au enhanced the activity of Pd atoms primarily by increasing the occupation state of Pd d-orbitals. Meanwhile, among the Pd sites formed on the Au surface, five to seven contiguous Pd atoms, three or four adjacent Pd atoms, and isolated Pd atoms were found to be the most active in the cleavage of C-Cl, C-Br, and C-I bonds, respectively. Besides, neighboring Au atoms directly contribute to the weakening of the C-Br/C-I bond. This work provides new insight into the rational design of bimetallic metal catalysts with specific catalytic properties.
金钯双金属纳米催化剂在断裂危险卤代污染物中的碳卤键(C-X)方面表现出优异的催化性能。更好地了解金原子如何促进钯位点的反应性,而不是模糊地解释为双金属效应,并确定对于这些反应哪些类型的钯位点是必要的,对于设计充分利用钯和金原子的原子精确纳米催化剂是至关重要的因素。在此,我们系统地操纵了钯活性中心的钯-钯配位数、d 轨道占据态和金-钯界面,并研究了 Au-Pd 在 C-X 键催化断裂中的结构-活性关系。结果表明,Au 主要通过增加 Pd d 轨道的占据态来增强 Pd 原子的活性。同时,在 Au 表面形成的 Pd 位点中,五到七个相邻的 Pd 原子、三个或四个相邻的 Pd 原子和孤立的 Pd 原子分别被发现是断裂 C-Cl、C-Br 和 C-I 键最活跃的。此外,相邻的 Au 原子直接有助于削弱 C-Br/C-I 键。这项工作为具有特定催化性能的双金属金属催化剂的合理设计提供了新的见解。