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Reactions and clustering of water with silica surface

机译:水与二氧化硅表面的反应和聚集

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The interaction between silica surface and water is an important topic in geophysics and materials science, yet little is known about the reaction process. In this study we use first-principles molecular dynamics to simulate the hydrolysis process of silica surface using large cluster models. We find that a single water molecule is stable near the surface but can easily dissociate at three-coordinated silicon atom defect sites in the presence of other water molecules. These extra molecules provide a mechanism for hydrogen transfer from the original water molecule, hence catalyzing the reaction. The two-coordinated silicon atom is inert to the water molecule, and water clusters up to pentamer could be stably adsorbed at this site at room temperature. (C) 2005 American Institute of Physics.
机译:二氧化硅表面与水之间的相互作用是地球物理学和材料科学中的重要课题,但对于反应过程知之甚少。在这项研究中,我们使用第一性原理的分子动力学来使用大型聚类模型模拟二氧化硅表面的水解过程。我们发现单个水分子在表面附近是稳定的,但是在存在其他水分子的情况下可以很容易地在三配位的硅原子缺陷部位解离。这些额外的分子提供了从原始水分子转移氢的机制,从而催化了反应。二配位的硅原子对水分子呈惰性,在室温下,直至五聚体的水簇都可以稳定地吸附在该位置。 (C)2005美国物理研究所。

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