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首页> 外文期刊>Journal of Materials Science >A combined X-ray absorption spectroscopy and molecular dynamic simulation to study the local structure potassium ion in hydrated montmorillonite
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A combined X-ray absorption spectroscopy and molecular dynamic simulation to study the local structure potassium ion in hydrated montmorillonite

机译:结合X射线吸收光谱和分子动力学模拟研究水合蒙脱土中局部结构钾离子

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Atomistic local structure of potassium ion adsorbed in hydrated montmorillonite (MMT) was investigated based on a combination of an extended X-ray absorption fine structure (EXAFS) spectroscopy and classical molecular dynamics (MD) simulation. The accuracy of the representative MMT atomistic model with PCFF-INTERFACE force field was validated. MD-simulated EXAFS spectra were calculated from trajectories of hydrated MMT atomic coordinates and the results were in satisfactory agreement with corresponding experimental EXAFS spectra. Interlayer spacing determined by X-ray diffraction was consistent with the mono-layer hydrated MMT structure. The first coordination shell of K+ ion in monohydrated MMT was formed by 5 water oxygen atoms at an average K-O-W distance of 2.85 and the second coordination shell of 6 oxygen atoms from both sides of the closest silicate tetrahedral sheet at K-O-MMT = 3.41 . For hydrated K+-MMT, MD and EXAFS results confirm that K+ counter ions form the inner-sphere surface complex and that the adsorbed sites were located with the vicinity edge of a basal oxygen hexagonal cavity in the silicate tetrahedral sheets of MMT. For higher-layer hydrated MMT, K+ ions can form surface complexes that are inner-sphere, outer-sphere, and transient diffuse-layer species depending on the number of intercalated water in the clay. Water molecules are of less ordered arrangement in the monohydrated MMT due to the confinement effect from the clay surface. K+ counter ions in the single layer hydrates are almost trapped within the cavities of the basal planes surface.
机译:基于扩展的X射线吸收精细结构(EXAFS)光谱学和经典分子动力学(MD)模拟相结合,研究了水合蒙脱土(MMT)中吸附的钾离子的原子局部结构。验证了具有PCFF-INTERFACE力场的代表性MMT原子模型的准确性。从水合MMT原子坐标的轨迹计算出MD模拟的EXAFS光谱,其结果与相应的实验EXAFS光谱令人满意。通过X射线衍射确定的层间距与单层水合MMT结构一致。一水合物MMT中K +离子的第一个配位壳由5个水氧原子形成,平均K-O-W距离为2.85,第二个配位壳由最接近的硅酸盐四面体片的两侧的6个氧原子形成,K-O-MMT = 3.41。对于水合的K + -MMT,MD和EXAFS结果证实K +抗衡离子形成了内球表面配合物,并且被吸附的位点位于MMT硅酸盐四面体片中基底氧六角形腔的附近边缘。对于较高层的水合MMT,K +离子可以形成表面配合物,这些配合物是内层,外层和瞬态扩散层,具体取决于粘土中插层水的数量。由于来自粘土表面的限制作用,水分子在一水合MMT中排列较不规则。单层水合物中的K +抗衡离子几乎被截留在基面表面的空腔内。

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