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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Hydrogen Molecules in the Small Dodecahedral Cage of a Clathrate Hydrate: Quantum Translation-Rotation Dynamics of the Confined Molecules
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Hydrogen Molecules in the Small Dodecahedral Cage of a Clathrate Hydrate: Quantum Translation-Rotation Dynamics of the Confined Molecules

机译:笼形水合物的小十二面体笼中的氢分子:受限分子的量子平移-旋转动力学

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摘要

We report the results of a rigorous theoretical study of the quantum translation-rotation (T-R) dynamics of one, two, and three H_2 and D_2 molecules confined inside the small dodecahedral (H_2O)_(20) cage of the sII clathrate hydrate. For a single D_2 molecule, o- and p-D_2, in the small cage, accurate quantum five-dimensional (5D) calculations of the T-R energy levels and wave functions are performed by diagonalizing the 5D Hamiltonian which includes explicitly, as fully coupled, all three translational and the two rotational degrees of freedom of D_2, while the cage is taken to be rigid. These calculations provide a quantitative description of the quantum dynamics of D_2 inside the small cage and enable comparison with our quantum 5D results for the encapsulated H_2, p- and o-H_2, published very recently. The ground-state properties of one, two, and three p-H_2 and o-D_2 molecules in the small cage are calculated rigorously using the diffusion Monte Carlo method, with the emphasis on the quantum dynamics of two confined hydrogen molecules. The guest molecules are found to be effectively excluded from the sizable central region of the cage; they reside within a shell less than 2 bohrs wide and are additionally localized by the corrugation of the H_2-cage interaction potential. The two H_2 molecules are compressed, their mean distance inside the cage being much smaller than in the free H_2 dimer.
机译:我们报告了严格的理论研究的结果,对一个,两个和三个H_2和D_2分子的量子平移-旋转(T-R)动力学进行了研究,这些分子被限制在sII笼形水合物的小十二面体(H_2O)_(20)笼中。对于小笼中的单个D_2分子o-和p-D_2,通过对角化5D哈密顿量对TR能级和波函数进行精确的量子五维(5D)计算,包括完全耦合的D_2的所有三个平移和两个旋转自由度,而保持架被认为是刚性的。这些计算提供了小笼子内部D_2量子动力学的定量描述,并可以与我们最近发布的封装H_2,p-和o-H_2的量子5D结果进行比较。使用扩散蒙特卡罗方法严格计算了小笼子中一个,两个和三个p-H_2和o-D_2分子的基态性质,重点是两个受限氢分子的量子动力学。发现客体分子被有效地排除在笼子的相当大的中央区域之外;它们位于小于2 bohrs的壳内,并通过H_2笼相互作用势的波纹化而局部化。这两个H_2分子被压缩,它们在笼中的平均距离比在游离H_2二聚体中小得多。

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