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Adsorption of Water on the Si(100) Surface: An Ab Initio and QM/MM Cluster Study

机译:Si(100)表面上的水吸附:从头算和QM / MM聚类研究

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摘要

The adsorption of water on the Si(100) surface is investigated using ab initio quantum chemical cluster calculations. A reaction profile is constructed using the multiconfigurational SCF method. The calculations demonstrate that the reactant should be described with a multireference wave function in order to obtain correct energetics, because it contains a bare dimer with significant diradical character. The system becomes almost single-configurational as water approaches the surface and forms a molecularly adsorbed intermediate. Therefore, except for the reactant, a single-configurational wave function seems to be sufficient for a correct description of the reaction. The adsorbed OH group in an isolated product can nearly freely rotate between the trans and gauche minima. Interactions between the OH groups and the dangling bonds are small and do not appear to change the OH orientation. However, the interdimer hydrogen bonding is stronger and forces the OH orientation to be perpendicular to the dimer bond. The free rotation of the OH group in an isolated dimer model and the hydrogen-bonding picture in an extended cluster model are consistent with the experimental finding for the OH orientation in the product. Si9H12, Si15H16, Si32H28, Si48H36, and Si64H44cluster models for the Si(100) surface are used, and the SIMOMM (surface integrated molecular orbital molecular mechanics) method is used effectively for these large cluster calculations. The SIMOMM and full quantum results are compared.
机译:使用从头算起的量子化学簇计算研究了水在Si(100)表面的吸附。使用多构型SCF方法构建反应曲线。计算表明,为了获得正确的能量,应使用多参考波函数描述反应物,因为它包含具有明显双自由基特征的裸露二聚体。当水接近表面并形成分子吸附的中间体时,该系统几乎变为单一结构。因此,除了反应物外,单结构波函数似乎足以正确描述反应。分离产物中吸附的OH基几乎可以在反式和gauche最小值之间自由旋转。 OH基团与悬挂键之间的相互作用很小,并且似乎不会改变OH取向。但是,二聚物间的氢键较强,并迫使OH方向垂直于二聚物键。分离的二聚体模型中OH基的自由旋转和扩展簇模型中的氢键图片与产物中OH取向的实验结果一致。使用Si(100)表面的Si9H12,Si15H16,Si32H28,Si48H36和Si64H44集群模型,并且SIMOMM(表面集成分子轨道分子力学)方法有效地用于这些大型聚类计算。比较SIMOMM和全量子结果。

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