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Effects of the CO2 Guest Molecule on the sI Clathrate Hydrate Structure

机译:CO2客体分子对sI笼形水合物结构的影响

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摘要

This paper analyzes the structural, energetic and mechanical properties of carbon dioxide hydrate clathrates calculated using finite cluster and periodic ab initio density-functional theory methodologies. Intermolecular interactions are described by the exchange-hole dipole moment method. The stability, gas saturation energetics, guest–host interactions, cage deformations, vibrational frequencies, and equation of state parameters for the low-pressure cubic phase of the CO@HO clathrate hydrate are presented. Our results reveal that: (i) the gas saturation process energetically favors complete filling; (ii) carbon dioxide molecules prefer to occupy the larger of the two cages in the structure; (iii) blue shifts occur in both the symmetric and antisymmetric stretching frequencies of CO upon encapsulation; and (iv) free rotation of guest molecules is restricted to a plane parallel to the hexagonal faces of the large cages. In addition, we calculate the librational frequency of the hindered rotation of the guest molecule in the plane perpendicular to the hexagonal faces. Our calculated spectroscopic data can be used as signatures for the detection of clathrate hydrates in planetary environments.
机译:本文分析了使用有限簇和周期从头算密度函数理论方法计算出的二氧化碳水合物包合物的结构,能量和力学性能。分子间的相互作用用交换孔偶极矩法描述。给出了CO @ HO笼形水合物低压立方相的稳定性,气体饱和能,客-主体相互作用,笼形变形,振动频率和状态参数方程。我们的结果表明:(i)气体饱和过程在能量上有利于完全填充; (ii)二氧化碳分子倾向于占据结构中两个笼子中较大的一个; (iii)封装时,CO的对称和非对称拉伸频率均发生蓝移; (iv)客体分子的自由旋转被限制在与大笼子的六边形面平行的平面上。此外,我们计算了客体分子在垂直于六边形平面的平面内受阻旋转的自由频率。我们计算出的光谱数据可以用作检测行星环境中包合物水合物的特征。

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