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首页> 外文期刊>The Journal of Chemical Physics >Structure sensitivity in oxide catalysis: First-principles kinetic Monte Carlo simulations for CO oxidation at RuO2(111)
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Structure sensitivity in oxide catalysis: First-principles kinetic Monte Carlo simulations for CO oxidation at RuO2(111)

机译:氧化物催化的结构敏感性:RuO2(111)上CO氧化的第一性原理动力学蒙特卡洛模拟

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We present a density-functional theory based kinetic Monte Carlo study of CO oxidation at the (111) facet of RuO2. We compare the detailed insight into elementary processes, steady-state surface coverages, and catalytic activity to equivalent published simulation data for the frequently studied RuO2(110) facet. Qualitative differences are identified in virtually every aspect ranging from binding energetics over lateral interactions to the interplay of elementary processes at the different active sites. Nevertheless, particularly at technologically relevant elevated temperatures, near-ambient pressures and near-stoichiometric feeds both facets exhibit almost identical catalytic activity. These findings challenge the traditional definition of structure sensitivity based on macroscopically observable turnover frequencies and prompt scrutiny of the applicability of structure sensitivity classifications developed for metals to oxide catalysis. (C) 2015 AIP Publishing LLC.
机译:我们介绍了基于密度泛函理论的动力学Monte Carlo研究RuO2(111)面上的CO氧化。我们将对基本过程,稳态表面覆盖率和催化活性的详细见识与经常研究的RuO2(110)面的等效已发布模拟数据进行比较。在几乎每个方面都可以发现质的差异,从绑定能量学到横向相互作用到基本过程在不同活性位点的相互作用。然而,特别是在技术上相关的高温下,接近环境压力和接近化学计量的进料两个方面都表现出几乎相同的催化活性。这些发现挑战了基于宏观可观察到的周转频率对结构敏感性的传统定义,并迅速审查了针对金属对氧化物催化开发的结构敏感性分类的适用性。 (C)2015 AIP Publishing LLC。

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