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双金属纳米催化剂在反应条件下和催化过程中的作用:从高真空条件到反应条件下化学变化的演变。

Action of bimetallic nanocatalysts under reaction conditions and during catalysis: evolution of chemistry from high vacuum conditions to reaction conditions.

机构信息

Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, Indiana 46556, USA.

出版信息

Chem Soc Rev. 2012 Dec 21;41(24):7980-93. doi: 10.1039/c2cs35185d.

Abstract

Bimetallic catalysts are one of the main categories of metal catalysts due to the tunability of electronic and geometric structures through alloying a second metal. The integration of a second metal creates a vast number of possibilities for varying the surface structure and composition of metal catalysts toward designing new catalysts. It is well acknowledged that the surface composition, atomic arrangement, and electronic state of bimetallic catalysts could be different from those before a chemical reaction or catalysis based on ex situ studies. Thanks to advances in electron-based surface analytical techniques, the surface chemistry and structure of bimetallic nanoparticles can be characterized under reaction conditions and during catalysis using ambient pressure analytical techniques including ambient pressure XPS, ambient pressure STM, X-ray absorption spectroscopy and others. These ambient pressure studies revealed various restructurings in the composition and arrangement of atoms in the surface region of catalysts under reaction conditions or during catalysis compared to that before reaction. These restructurings are driven by thermodynamic and kinetic factors. The surface energy of the constituent metals and adsorption energy of reactant molecules or dissociated species on a metal component are two main factors from the point of view of thermodynamics. Correlations between the authentic surface structure and chemistry of catalysts during catalysis and simultaneous catalytic performance were built for understanding catalytic mechanisms of bimetallic catalysts toward designing new catalysts with high activity, selectivity, and durability.

摘要

双金属催化剂是金属催化剂的主要类别之一,因为通过合金化第二种金属可以调整电子和几何结构的可调谐性。第二种金属的加入为改变金属催化剂的表面结构和组成创造了大量的可能性,从而设计出新型催化剂。人们普遍认为,基于原位研究,双金属催化剂的表面组成、原子排列和电子态在化学反应或催化之前可能会有所不同。由于基于电子的表面分析技术的进步,可以使用环境压力分析技术(包括环境压力 XPS、环境压力 STM、X 射线吸收光谱等)在反应条件下和催化过程中对双金属纳米粒子的表面化学和结构进行表征。与反应前相比,这些环境压力研究揭示了催化剂表面区域中原子的组成和排列在反应条件下或催化过程中的各种重构。这些重构是由热力学和动力学因素驱动的。从热力学的角度来看,组成金属的表面能和反应物分子或离解物种在金属组分上的吸附能是两个主要因素。为了理解双金属催化剂的催化机制,从而设计出具有高活性、选择性和耐久性的新型催化剂,建立了催化剂在催化过程中的真实表面结构和化学与其同时催化性能之间的相关性。

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