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Theoretical models for gamma-Al2O3 (110) surface hydroxylation: An ab initio embedded cluster study

机译:γ-Al2O3(110)表面羟基化的理论模型:从头算嵌入的簇研究

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A theoretical analysis of gamma-Al2O3 (110) surface hydroxylation based on ab initio Hartree-Fock embedded cluster calculations was carried out. Both tetrahedral and octahedral Al sites were considered. These sites were modeled by a series of clusters of increasing size: Al8O3, Al12O5, and Al16O8, embedded in an array of point charges. The adsorption of water was found to be dissociative or nondissociative depending on the cluster size, although the mechanism clearly converges toward dissociation for the more reliable models in agreement with the experiment. This dependence can be explained in light of the basicity modification of surface oxide ions induced by the environment as well as by surface relaxation. Comparison of chemisorption energies suggests that the preferred site for hydroxylation is a low coordination tetrahedral aluminum. (C) 1998 John Wiley & Sons, Inc. [References: 23]
机译:基于从头算Hartree-Fock嵌入式簇计算,对γ-Al2O3(110)表面羟基化进行了理论分析。考虑了四面体和八面体的Al位点。这些位点由嵌入簇点电荷中的一系列大小不断增加的簇来模拟:Al8O3,Al12O5和Al16O8。水的吸附被发现是解离的还是非解离的,取决于簇的大小,尽管对于与实验相符的更可靠的模型,该机理显然趋向于解离。可以根据环境以及表面松弛引起的表面氧化物离子的碱度改变来解释这种依赖性。化学吸附能的比较表明,优选的羟基化位点是低配位四面体铝。 (C)1998 John Wiley&Sons,Inc. [参考:23]

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