Sebastianelli Francesco, Xu Minzhong, Bacić Zlatko
Department of Chemistry, New York University, New York, New York 10003, USA.
J Chem Phys. 2008 Dec 28;129(24):244706. doi: 10.1063/1.3049781.
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.
我们报告了对结构II型笼形水合物大十六面体(5(12)6(4))笼内一至五个对氢(p-H(2))和邻氘(o-D(2))分子的量子平动-转动(T-R)动力学进行的扩散蒙特卡罗(DMC)计算,该笼被视为刚性。这些计算定量描述了纳米限域中(p-H(2))(n)和(o-D(2))(n)小团簇(n = 1 - 5)基态性质、能量以及振动平均几何结构的尺寸演变。T-R运动的零点能(ZPE)随团簇尺寸急剧上升,对于笼内的(p-H(2))(4),达到势阱深度的74%。在低温下,团簇ZPE随n的快速增加是限制大笼中最多容纳四个H(2)或D(2)分子的主要因素,这与实验结果一致。我们关于四个D(2)分子振动平均空间分布、它们到笼中心的平均距离、D(2)-D(2)间距以及四面体(D(2))(4)团簇相对于大笼框架的特定取向和定位的DMC结果,与涉及大笼中四重D(2)占据的低温中子衍射实验非常吻合。