Niimi Keisuke, Taketsugu Tetsuya, Nakayama Akira
Graduate School of Chemical Sciences and Engineering, Hokkaido University, Sapporo 060-0810, Japan.
Phys Chem Chem Phys. 2015 Mar 28;17(12):7872-80. doi: 10.1039/c5cp00568j.
The matrix shifts of the H-Xe stretching frequency of noble-gas hydrides, HXeCCH, HXeBr, and HXeI in various noble-gas matrices (in Ne, Ar, Kr, and Xe matrices) are investigated via the hybrid quantum-classical simulations. The order of the H-Xe stretching frequencies is found to be ν(gas) < ν(Ne) < ν(Xe) < ν(Kr) < ν(Ar) for HXeCCH and HXeBr, while it is ν(gas) < ν(Ne) < ν(Xe) < ν(Ar) < ν(Kr) for HXeI. This order is anomalous with respect to the matrix dielectric constants, and the calculated results reproduce the experimentally observed shifts quite successfully. We also find that the matrix shifts from the gas-phase values are Δν(HXeCCH) ≈ Δν(HXeCl) < Δν(HXeBr) < Δν(HXeI) in the same noble-gas matrix environments, which implies that the weakly bound molecules exhibit large matrix shifts. The local trapping site is analyzed in detail, and it is shown that a realistic modeling of the surrounding matrix environments is essential to describe the unusual matrix shifts accurately.
通过混合量子经典模拟研究了稀有气体氢化物HXeCCH、HXeBr和HXeI在各种稀有气体基质(Ne、Ar、Kr和Xe基质)中的H-Xe伸缩频率的基质位移。发现对于HXeCCH和HXeBr,H-Xe伸缩频率的顺序为ν(气体) < ν(Ne) < ν(Xe) < ν(Kr) < ν(Ar),而对于HXeI,顺序为ν(气体) < ν(Ne) < ν(Xe) < ν(Ar) < ν(Kr)。相对于基质介电常数,该顺序是反常的,并且计算结果非常成功地再现了实验观察到的位移。我们还发现在相同的稀有气体基质环境中,从气相值的基质位移为Δν(HXeCCH) ≈ Δν(HXeCl) < Δν(HXeBr) < Δν(HXeI),这意味着弱束缚分子表现出大的基质位移。详细分析了局部俘获位点,结果表明对周围基质环境进行逼真的建模对于准确描述异常的基质位移至关重要。