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THz spectroscopy of weakly bound cluster molecules in solid para-hydrogen: a sensitive probe of van der Waals interactions

机译:固体对氢气中弱束簇分子的THz光谱:Van der Waals相互作用的敏感探针

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摘要

The present work demonstrates that 99.9% enriched solid para-H-2 below 3 K provides an excellent inert and transparent medium for the exploration of large-amplitude intermolecular vibrational motion of weakly bound van der Waals cluster molecules in the THz spectral region. THz absorption spectra have been generated for CO2/H2O and CS2/H2O mixtures embedded in enriched solid para-H-2 and numerous observed transitions associated with large-amplitude librational motion of the weakly bound binary CO2H2O and CS2H2O van der Waals cluster molecules have been assigned together with tentative assignments for the ternary CS2(H2O)(2) system. The interaction strength, directionality and anharmonicity of the weak van der Waals bonds between the molecules can be characterized via these THz spectral signatures and yield rigorous benchmarks for high-level ab initio methodologies. It is suggested that even a less stable linear conformation of the ternary CS2(H2O)(2) system, where one H2O molecule is linked to each S atom of the CS2 subunit, may be formed due to the kinetics associated with the mobility of free H2O molecules in the soft para-H-2 medium. In addition, the spectroscopic observations confirm a linear and planar global intermolecular potential energy minimum for the binary CS2H2O system with C-2v symmetry, where the O atom on the H2O molecule is linked to one of the S atoms on the CS2 subunit. A semi-experimental value for the vibrational zero-point energy contribution of 1.93 +/- 0.10 kJ mol(-1) from the class of large-amplitude intermolecular vibrational modes is proposed. The combination with CCSD(T)/CBS electronic energy predictions provides a semi-experimental estimate of 5.08 +/- 0.15 kJ mol(-1) for the binding energy D-0 of the CS2H2O van der Waals system.
机译:本工作表明,99.9%的富集固体对 - H-2的下方3 K提供了大振幅的勘探分子间弱结合的van der在太赫兹光谱区范德华簇分子的振动运动优异的惰性和透明介质。谱嵌入在与弱结合的二进制CO2H2O的大振幅librational运动和CS2H2O范德华簇分子相关联的富集固体对 - H-2和许多观察到的转变CO 2 / H 2 O和CS2 / H 2 O的混合物已被产生的THz吸收已经与三元CS2(H2O)(2)系统暂定分配一起分配。弱范德华分子间范德华键的相互作用强度,方向性和非谐性可以通过这些太赫兹光谱特征来表征和屈服高水平AB严格基准算方法。有人建议,甚至三元CS2(H2O)(2)的系统,其中,一个H 2 O分子与所述CS2亚基的各S原子,的不太稳定的线性构象可能由于与自由移动性相关的动力学来形成水分子在软段-H-2培养基。此外,光谱观测确认为二进制CS2H2O系统与C-2V对称,其中在H 2 O分子的氧原子链接到所述CS2亚基S原子中的一个的线性的和平面的全球分子间势能最小。提出了一种用于1.93 +/- 0.10千焦耳摩尔(-1)的从类的大振幅的分子间的振动模式的振动零点能贡献的半实验值。与CCSD(T)的组合/ CBS电子能量的预测提供的5.08 +/- 0.15千焦耳摩尔(-1)为CS2H2O面包车的结合能d-0范德华系统半实验估计。

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