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结构II笼形水合物小笼子中的H、HD和D:振动-平动-转动本征态全耦合量子六维计算的振动频率位移

H, HD, and D in the small cage of structure II clathrate hydrate: Vibrational frequency shifts from fully coupled quantum six-dimensional calculations of the vibration-translation-rotation eigenstates.

作者信息

Lauvergnat David, Felker Peter, Scribano Yohann, Benoit David M, Bačić Zlatko

机构信息

Laboratoire de Chimie Physique, UMR-CNRS 8000, Université de Paris-Sud, Orsay F-91405, France.

Department of Chemistry and Biochemistry, University of California, Los Angeles, California 90095-1569, USA.

出版信息

J Chem Phys. 2019 Apr 21;150(15):154303. doi: 10.1063/1.5090573.

Abstract

We report the first fully coupled quantum six-dimensional (6D) bound-state calculations of the vibration-translation-rotation eigenstates of a flexible H, HD, and D molecule confined inside the small cage of the structure II clathrate hydrate embedded in larger hydrate domains with up to 76 HO molecules, treated as rigid. Our calculations use a pairwise-additive 6D intermolecular potential energy surface for H in the hydrate domain, based on an ab initio 6D H-HO pair potential for flexible H and rigid HO. They extend to the first excited (v = 1) vibrational state of H, along with two isotopologues, providing a direct computation of vibrational frequency shifts. We show that obtaining a converged v = 1 vibrational state of the caged molecule does not require converging the very large number of intermolecular translation-rotation states belonging to the v = 0 manifold up to the energy of the intramolecular stretch fundamental (≈4100 cm for H). Only a relatively modest-size basis for the intermolecular degrees of freedom is needed to accurately describe the vibrational averaging over the delocalized wave function of the quantum ground state of the system. For the caged H, our computed fundamental translational excitations, rotational j = 0 → 1 transitions, and frequency shifts of the stretch fundamental are in excellent agreement with recent quantum 5D (rigid H) results [A. Powers et al., J. Chem. Phys. 148, 144304 (2018)]. Our computed frequency shift of -43 cm for H is only 14% away from the experimental value at 20 K.

摘要

我们报告了首次对嵌入在含有多达76个视为刚性的水分子的较大水合物区域中的结构II型笼形水合物小笼子内的柔性H、HD和D分子的振动-平动-转动本征态进行的全耦合量子六维(6D)束缚态计算。我们的计算基于柔性H和刚性水分子的从头算6D H-水分子对势,使用了水合物区域中H的成对加和6D分子间势能面。计算扩展到了H及其两种同位素变体的第一激发(v = 1)振动态,直接计算了振动频率的位移。我们表明,要获得笼中分子收敛的v = 1振动态,并不需要将属于v = 0多重态的大量分子间平动-转动态收敛到分子内伸缩基频(对于H约为4100 cm)的能量。只需要一个相对较小尺寸的分子间自由度基组,就能准确描述系统量子基态离域波函数上的振动平均。对于笼中的H,我们计算得到的基本平动激发、转动j = 0 → 1跃迁以及伸缩基频的频率位移与最近的量子5D(刚性H)结果[A. Powers等人,《化学物理杂志》148, 144304 (2018)]非常吻合。我们计算得到的H的频率位移为-43 cm,与20 K时的实验值仅相差14%。

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