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Animated molecular dynamics simulations of hydrated caesium-smectite interlayers

机译:水合铯-蒙脱石中间层的动画分子动力学模拟

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摘要

Computer animation of center of mass coordinates obtained from 800 ps molecular dynamics simulations of Cs-smectite hydrates (1/3 and 2/3 water monolayers) provided information concerning the structure and dynamics of the interlayer region that could not be obtained through traditional simulation analysis methods. Cs+ formed inner sphere complexes with the mineral surface, and could be seen to jump from one attracting location near a layer charge site to the next, while water molecules were observed to migrate from the hydration shell of one ion to that of another. Neighboring ions maintained a partial hydration shell by sharing water molecules, such that a single water molecule hydrated two ions simultaneously for hundreds of picoseconds. Cs-montmorillonite hydrates featured the largest extent of this sharing interaction, because interlayer ions were able to inhabit positions near surface cavities as well as at their edges, close to oxygen triads. The greater positional freedom of Cs+ within the montmorillonite interlayer, a result of structural hydroxyl orientation and low tetrahedral charge, promoted the optimization of distances between cations and water molecules required for water sharing. Preference of Cs+ for locations near oxygen triads was observed within interlayer beidellite and hectorite. Water molecules also could be seen to interact directly with the mineral surface, entering its surface cavities to approach attracting charge sites and structural hydroxyls. With increasing water content, water molecules exhibited increased frequency and duration of both cavity habitation and water sharing interactions. Competition between Cs+ and water molecules for surface sites was evident. These important cooperative and competitive features of interlayer molecular behavior were uniquely revealed by animation of an otherwise highly complex simulation output.
机译:从Cs-蒙脱石水合物(1/3和2/3水单层)的800 ps分子动力学模拟获得的质心坐标的计算机动画提供了有关层间区域的结构和动力学的信息,而这些信息是传统模拟分析无法获得的方法。 Cs + 与矿物表面形成内球复合物,可以看到它从一个层电荷位点附近的一个吸引位置跃迁到另一个,而观察到水分子从一个电荷层的水化壳中迁移出来。离子到另一个。相邻的离子通过共享水分子来维持部分水合壳,这样一个水分子同时将两个离子水合了数百皮秒。 Cs-蒙脱石水合物具有最大程度的这种共享相互作用,因为层间离子能够在表面空穴附近及其边缘,靠近三元氧的位置占据位置。结构羟基取向和低四面体电荷的结果是,蒙脱石夹层中Cs + 的位置自由度更大,促进了共享水所需的阳离子与水分子之间距离的优化。在层间贝得石和锂蒙脱石中观察到Cs + 对于三元组附近的位置更有利。还可以看到水分子与矿物表面直接相互作用,进入其表面腔以接近吸引电荷的位置和结构性羟基。随着水含量的增加,水分子在空腔栖息和水共享相互作用中的频率和持续时间均增加。 Cs + 与水分子之间竞争表面位点是显而易见的。层间分子行为的这些重要的合作和竞争特征是通过本来非常复杂的模拟输出的动画独特地揭示出来的。

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