Abst'/> Modeling the THF clathrate hydrate dynamics by combining molecular dynamics and quasi-elastic neutron scattering
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Modeling the THF clathrate hydrate dynamics by combining molecular dynamics and quasi-elastic neutron scattering

机译:通过组合分子动力学和准弹性中子散射来建立THF包合物水合物动力学

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AbstractThe dynamics of the THF molecule encapsulated in the type II clathrate hydrate matches the MD-QENS observation time (typically 0.1–10ps) between 100K and 270K. Spatial and time characteristics of the THF molecule’s dynamics obtained by means of MD simulations are in agreement with those experimentally determined by means of quasielastic neutron scattering. A detailed model of the THF dynamics is then proposed through the calculations of MD-derived properties. Reorientational relaxation has been observed on a timescale of 0.7±0.1ps at 270K with activation energy of 3.0±0.3kJ/mol in addition to a highly damped rotational excitation occurring in the plane of the THF molecule with a period ofca.2ps. Moreover, the anisotropic cage energy landscape of the THF clathrate hydrate is revealed through a comprehensive investigation of THF orientational distribution functions, revealing the occurrence of preferred orientation of the THF molecule within the cage.]]>
机译:<![cdata [ 抽象 封装在II型Clathrate水合物中的THF分子的动态匹配MD-QENS观察时间(通常为0.1 -10ps)在100k和270k之间。通过MD模拟获得的THF分子动力学的空间和时间特征与通过逐燃料中子散射实验确定的那些进行一致。然后通过计算MD衍生特性来提出THF动力学的详细模型。在270k的时间尺度下,在THF分子平面中发生的高度阻尼旋转激发,在速度为3.0±0.3kJ / mol的速度为0.7±0.1ps的时间尺度,在270k的情况下,在270k的速度下观察到重新定位弛豫。 CA。 2ps。此外,通过综合对THF定位分布功能的综合调查,揭示了THF包合物水合物的各向异性笼式能量景观,揭示了笼内THF分子的优选取向。 ]]>

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