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Structure and dynamics of liquid CS2: Going from ambient to elevated pressure conditions

机译:液体CS2的结构和动力学:从环境到高压条件

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Molecular dynamics simulation studies were performed to investigate the structural and dynamic properties of liquid carbon disulfide (CS2) from ambient to elevated pressure conditions. The results obtained have revealed structural changes at high pressures, which are related to the more dense packing of the molecules inside the first solvation shell. The calculated neutron and X-ray structure factors have been compared with available experimental diffraction data, also revealing the pressure effects on the short-range structure of the liquid. The pressure effects on the translational, reorientational, and residence dynamics are very strong, revealing a significant slowing down when going from ambient pressure to 1.2 GPa. The translational dynamics of the linear CS2 molecules have been found to be more anisotropic at elevated pressures, where cage effects and librational motions are reflected on the shape of the calculated time correlation functions and their corresponding spectral densities. Published by AIP Publishing.
机译:进行了分子动力学模拟研究,以研究液态二硫化碳(CS2)在常压到高压条件下的结构和动力学特性。获得的结果揭示了在高压下的结构变化,这与第一溶剂化壳内分子的更紧密堆积有关。已将计算出的中子和X射线结构因子与可用的实验衍射数据进行了比较,还揭示了压力对液体的短程结构的影响。压力对平移,方向性和停留动力学的影响非常强烈,显示从环境压力降至1.2 GPa时显着降低。已经发现,线性CS2分子的平移动力学在升高的压力下更加各向异性,其中笼效应和自由运动反映在所计算的时间相关函数的形状及其相应的光谱密度上。由AIP Publishing发布。

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