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首页> 外文期刊>The Journal of Chemical Physics >Quantum dynamics of small H-2 and D-2 clusters in the large cage of structure II clathrate hydrate: Energetics, occupancy, and vibrationally averaged cluster structures
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Quantum dynamics of small H-2 and D-2 clusters in the large cage of structure II clathrate hydrate: Energetics, occupancy, and vibrationally averaged cluster structures

机译:结构II笼形水合物的大笼子中小H-2和D-2团簇的量子动力学:高能,占有率和振动平均的团簇结构

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We report diffusion Monte Carlo (DMC) calculations of the quantum translation-rotation (T-R) dynamics of one to five para-H-2 (p-H-2) and ortho-D-2 (o-D-2) molecules inside the large hexakaidecahedral (5(12)6(4)) cage of the structure II clathrate hydrate, which was taken to be rigid. These calculations provide a quantitative description of the size evolution of the ground-state properties, energetics, and the vibrationally averaged geometries, of small (p-H-2)(n) and (o-D-2)(n) clusters, n=1-5, in nanoconfinement. The zero-point energy (ZPE) of the T-R motions rises steeply with the cluster size, reaching 74% of the potential well depth for the caged (p-H-2)(4). At low temperatures, the rapid increase of the cluster ZPE as a function of n is the main factor that limits the occupancy of the large cage to at most four H-2 or D-2 molecules, in agreement with experiments. Our DMC results concerning the vibrationally averaged spatial distribution of four D-2 molecules, their mean distance from the cage center, the D-2-D-2 separation, and the specific orientation and localization of the tetrahedral (D-2)(4) cluster relative to the framework of the large cage, agree very well with the low-temperature neutron diffraction experiments involving the large cage with the quadruple D-2 occupancy.
机译:我们报告了大六方十二面体中一到五个对位H-2(pH-2)和邻位D-2(oD-2)分子的量子平移-旋转(TR)动力学的扩散蒙特卡罗(DMC)计算。结构II笼形水合物的笼(5(12)6(4)),被认为是刚性的。这些计算可定量描述小的(pH-2)(n)和(oD-2)(n)团簇(n = 1-)的基态性质,能量学和振动平均几何尺寸的演变。 5,在纳米约束下。 T-R运动的零点能量(ZPE)随着簇的大小而急剧上升,达到了笼中(p-H-2)的潜在阱深度的74%(4)。与实验一致,在低温下,团簇ZPE随n的快速增加是将大笼子最多容纳四个H-2或D-2分子的主要因素。我们的DMC结果涉及四个D-2分子的振动平均空间分布,它们与笼中心的平均距离,D-2-D-2的间距以及四面体(D-2)的特定方向和位置(4 )相对于大笼子框架的簇,与涉及四倍D-2占有率的大笼子的低温中子衍射实验非常吻合。

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