Zhu Cheng, Tsuge Masashi, Räsänen Markku, Khriachtchev Leonid
Department of Chemistry, University of Helsinki, P.O. Box 55, FI-00014 Helsinki, Finland.
J Chem Phys. 2015 Apr 14;142(14):144306. doi: 10.1063/1.4917167.
The HXeI⋯HCl and HXeI⋯HCCH complexes are studied computationally and experimentally in a Xe matrix. In the experiments, three bands of the HXeI⋯HCl complex and one band of the HXeI⋯HCCH complex in the H-Xe stretching region are observed. The monomer-to-complex shifts are +94, +111, and +155 cm(-1) for the HXeI⋯HCl complex and +49 cm(-1) for the HXeI⋯HCCH complex. The bands of the complexed HCl molecules are also observed with large red shifts from the HCl monomer (-187, -252, and -337 cm(-1)). The ab initio calculations at the CCSD(T)/def2-TZVPPD level of theory predict two stable structures for the HXeI⋯HCl complex with interaction energies of -3.72 and -0.28 kcal mol(-1) and one structure for the HXeI⋯HCCH complex with an interaction energy of -2.67 kcal mol(-1) and the calculated monomer-to-complex shifts are in a good agreement with experiment (in the case of HXeI⋯HCl, for the stronger structure). The HXeI molecules are decomposed by broad-band infrared light; however, the decomposition is much more efficient for the HXeI monomer than for the complexes studied here as well as for the previously studied HXeI⋯HI and HXeI⋯HBr complexes. In fact, the decomposition efficiency decreases as the monomer-to-complex shift of the H-Xe stretching mode increases.
在氙基质中对HXeI⋯HCl和HXeI⋯HCCH配合物进行了计算和实验研究。在实验中,在H-Xe伸缩区域观察到了HXeI⋯HCl配合物的三条谱带和HXeI⋯HCCH配合物的一条谱带。对于HXeI⋯HCl配合物,单体到配合物的位移分别为+94、+111和+155 cm(-1),对于HXeI⋯HCCH配合物为+49 cm(-1)。还观察到配合的HCl分子的谱带相对于HCl单体有很大的红移(-187、-252和-337 cm(-1))。在CCSD(T)/def2-TZVPPD理论水平下的从头算计算预测,HXeI⋯HCl配合物有两种稳定结构,相互作用能分别为-3.72和-0.28 kcal mol(-1),HXeI⋯HCCH配合物有一个结构,相互作用能为-2.67 kcal mol(-1),计算得到的单体到配合物的位移与实验结果吻合良好(对于HXeI⋯HCl,是较强结构的情况)。HXeI分子会被宽带红外光分解;然而,对于HXeI单体,其分解效率比本文研究的配合物以及之前研究的HXeI⋯HI和HXeI⋯HBr配合物要高得多。事实上,随着H-Xe伸缩模式的单体到配合物位移增加,分解效率会降低。