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首页> 外文期刊>The Journal of Chemical Physics >Ag-Cu catalysts for ethylene epoxidation: Selectivity and activity descriptors
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Ag-Cu catalysts for ethylene epoxidation: Selectivity and activity descriptors

机译:用于乙烯环氧化的Ag-Cu催化剂:选择性和活性指标

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摘要

Ag-Cu alloy catalysts for ethylene epoxidation have been shown to yield higher selectivity towards ethylene oxide compared to pure Ag, the unique catalyst employed in the industrial process. Previous studies showed that under oxidizing conditions Cu forms oxide layers on top of Ag. Using first-principles atomistic simulations based on density functional theory, we investigate the reaction mechanism on the thin oxide layer structures and establish the reasons for the improved selectivity. We extend the range of applicability of the selectivity descriptor proposed by Kokalj [J. Catal. 254, 304 (2008)]10.1016/j.jcat.2008.01.008, based on binding energies of reactants, intermediates, and products, by refitting its parameters so as to include thin oxide layer catalysts. We show that the selectivity is mainly controlled by the relative strength of the metal-carbon vs. metal-oxygen bonds, while the height of the reaction barriers mostly depend on the binding energy of the common oxametallacycle intermediate.
机译:与纯Ag(工业过程中使用的独特催化剂)相比,用于乙烯环氧化的Ag-Cu合金催化剂已显示出对环氧乙烷更高的选择性。先前的研究表明,在氧化条件下,Cu在Ag的顶部形成氧化物层。使用基于密度泛函理论的第一性原理原子模拟,我们研究了薄氧化物层结构上的反应机理,并确定了提高选择性的原因。我们扩展了由Kokalj提出的选择性描述子的适用范围。卡塔尔。 254,304(2008)] 10.1016 / j.jcat.2008.01.008,基于反应物,中间体和产物的结合能,通过调整其参数以包括薄氧化物层催化剂。我们表明,选择性主要受金属-碳键与金属-氧键的相对强度控制,而反应势垒的高度主要取决于常见的氧杂金属环中间体的结合能。

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