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首页> 外文期刊>The Journal of Chemical Physics >Universal tight binding model for chemical reactions in solution and at surfaces. III. Stoichiometric and reduced surfaces of titania and the adsorption of water
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Universal tight binding model for chemical reactions in solution and at surfaces. III. Stoichiometric and reduced surfaces of titania and the adsorption of water

机译:溶液和表面化学反应的通用紧密结合模型。三,二氧化钛的化学计量和还原表面以及水的吸附

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We demonstrate a model for stoichiometric and reduced titanium dioxide intended for use in molecular dynamics and other atomistic simulations and based in the polarizable ion tight binding theory. This extends the model introduced in two previous papers from molecular and liquid applications into the solid state, thus completing the task of providing a comprehensive and unified scheme for studying chemical reactions, particularly aimed at problems in catalysis and electrochemistry. As before, experimental results are given priority over theoretical ones in selecting targets for model fitting, for which we used crystal parameters and band gaps of titania bulk polymorphs, rutile and anatase. The model is applied to six low index titania surfaces, with and without oxygen vacancies and adsorbed water molecules, both in dissociated and non-dissociated states. Finally, we present the results of molecular dynamics simulation of an anatase cluster with a number of adsorbed water molecules and discuss the role of edge and corner atoms of the cluster.
机译:我们展示了一种用于化学计量和还原二氧化钛的模型,该模型旨在用于分子动力学和其他原子模拟,并基于可极化离子紧密结合理论。这将先前两篇论文中介绍的模型从分子和液体应用扩展到固态,从而完成了提供一个全面而统一的方案来研究化学反应的任务,特别是针对催化和电化学问题。如前所述,在选择模型拟合目标时,实验结果优先于理论结果,我们使用了晶体参数和二氧化钛本体多晶型物,金红石和锐钛矿的带隙。该模型适用于六个低指数的二氧化钛表面,有和没有氧空位和吸附的水分子,处于解离态和非解离态。最后,我们介绍了具有许多吸附水分子的锐钛矿簇的分子动力学模拟结果,并讨论了簇的边缘和角落原子的作用。

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