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控制 Pd-Co 电催化剂上氧还原反应能量学的因素:来自第一性原理的见解。

Factors controlling the energetics of the oxygen reduction reaction on the Pd-Co electro-catalysts: insight from first principles.

机构信息

Department of Physics, University of Central Florida, Orlando, Florida 32816-2385, USA.

出版信息

J Chem Phys. 2011 Oct 7;135(13):134702. doi: 10.1063/1.3643714.

Abstract

We report here results of our density functional theory based computational studies of the electronic structure of the Pd-Co alloy electrocatalysts and energetics of the oxygen reduction reaction (ORR) on their surfaces. The calculations have been performed for the (111) surfaces of pure Pd, Pd(0.75)Co(0.25) and Pd(0.5)Co(0.5) alloys, as well as of the surface segregated Pd/Pd(0.75)Co(0.25) alloy. We find the hybridization of dPd and dCo electronic states to be the main factor controlling the electrocatalytic properties of Pd/Pd(0.75)Co(0.25). Namely the dPd-dCo hybridization causes low energy shift of the surface Pd d-band with respect to that for Pd(111). This shift weakens chemical bonds between the ORR intermediates and the Pd/Pd(0.75)Co(0.25) surface, which is favorable for the reaction. Non-segregated Pd(0.75)Co(0.25) and Pd(0.5)Co(0.5) surfaces are found to be too reactive for ORR due to bonding of the intermediates to the surface Co atoms. Analysis of the ORR free energy diagrams, built for the Pd and Pd/Pd(0.75)Co(0.25), shows that the co-adsorption of the ORR intermediates and water changes the ORR energetics significantly and makes ORR more favorable. We find the onset ORR potential estimated for the configurations with the O-OH and OH-OH co-adsorption to be in very good agreement with experiment. The relevance of this finding to the real reaction environment is discussed.

摘要

我们在此报告基于密度泛函理论的 Pd-Co 合金电催化剂电子结构和表面氧还原反应(ORR)能垒的计算研究结果。这些计算是针对纯 Pd、Pd(0.75)Co(0.25)和 Pd(0.5)Co(0.5)合金的(111)表面以及表面偏析的 Pd/Pd(0.75)Co(0.25)合金进行的。我们发现 dPd 和 dCo 电子态的杂化是控制 Pd/Pd(0.75)Co(0.25)电催化性能的主要因素。即 dPd-dCo 杂化导致表面 Pd d 带相对于 Pd(111)的能量发生低能位移。这种位移削弱了 ORR 中间体与 Pd/Pd(0.75)Co(0.25)表面之间的化学键,有利于反应进行。由于中间体与表面 Co 原子的结合,非偏析的 Pd(0.75)Co(0.25)和 Pd(0.5)Co(0.5)表面对于 ORR 反应过于活跃。为 Pd 和 Pd/Pd(0.75)Co(0.25)构建的 ORR 自由能图的分析表明,ORR 中间体和水的共吸附显著改变了 ORR 的能垒,使其更加有利。我们发现,对于 O-OH 和 OH-OH 共吸附构型的起始 ORR 电位估计与实验非常吻合。讨论了这一发现与实际反应环境的相关性。

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