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FIRST-PRINCIPLES DENSITY FUNCTIONAL THEORY STUDIES OF REACTIVITIES OF HETEROGENEOUS CATALYSTS DETERMINED BY STRUCTURE AND SUBSTRATE

机译:由结构和基质确定的非均相催化剂反应性的第一原理密度泛函理论

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摘要

In this dissertation, density functional theory (DFT) calculations were used to investigate (1)NO2 adsorption on BaO in NOx Storage Reduction (NSR) catalyst affected by the morphology of BaO and the γ-Al2O3 support, (2) energy barrier of H2 dissociative adsorption over Mg clusters affected by its electronic structure, and (3) comparison of the activities of CeO2 clusters affected by two different supports--monoclinic ZrO2 and non-spinel γ-Al2O3. Our results showed that the electronic effect caused by the non-stoichiometry of the bare BaO clusters and surfaces improves their reactivities toward NO2 adsorption greatly, whereas the geometric structure of the catalyst has only minor effect on the activity; we also found that the γ-Al2O3 substrate improves the reactivities of the supported BaO clusters and at the same time the interface between BaO and γ-Al2O3 provided a unique and highly reactive environment for NO2 adsorption. Hydrogen dissociation barrier over pure Mg clusters is greatly affected by the electronic structure of the clusters--closed shell clusters such as Mg10 and Mg92- have higher energy barrier toward H2 dissociation; however, H2 dissociation over clusters that are two electrons shy from the closed electronic shell are relatively easier. As substrates, neither ZrO2(111) nor γ-Al2O3(100) affects the reactivity of the supported Ce2O4 toward CO2 adsorption and CO physisorption significantly; whereas the reactivity of Ce2O4 toward CO reactive adsorption were found to be affected by the two substrates very differently.
机译:本文采用密度泛函理论(DFT)计算研究(1)受BaO形态和γ-Al2O3载体形态影响的NOx还原(NSR)催化剂中BaO对NO的吸附,(2)H2的能垒受其电子结构影响的Mg团簇的离解吸附,(3)比较两种不同载体-单斜晶ZrO2和非尖晶石γ-Al2O3影响的CeO2团簇的活性。我们的研究结果表明,由裸露的BaO团簇和表面的非化学计量引起的电子效应极大地提高了其对NO2吸附的反应性,而催化剂的几何结构对活性的影响很小。我们还发现,γ-Al2O3基质提高了负载的BaO团簇的反应性,同时BaO和γ-Al2O3之间的界面为NO2吸附提供了独特的高反应性环境。纯Mg团簇上的氢离解能垒受团簇的电子结构的影响-封闭的壳团簇(如Mg10和Mg92)对H2的分解具有更高的能垒;然而,相对于封闭的电子壳而言,通过两个电子避开两个电子簇的氢解离相对容易。作为底物,ZrO2(111)和γ-Al2O3(100)都不会显着影响负载的Ce2O4对CO2吸附和CO物理吸附的反应性。 Ce2O4对CO反应性吸附的反应性受两种底物的影响非常不同。

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    Cheng Lei;

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  • 年度 2009
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