首页> 外文OA文献 >Interaction of rare-gas-containing molecules with nitrogen: Matrix-isolation and ab initio study of HArF⋯N₂, HKrF⋯N₂, and HKrCl⋯N₂ complexes
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Interaction of rare-gas-containing molecules with nitrogen: Matrix-isolation and ab initio study of HArF⋯N₂, HKrF⋯N₂, and HKrCl⋯N₂ complexes

机译:稀有气体分子与氮的相互作用:HArF⋯N 2,HKrF⋯N 2和HKrClrN 2配合物的基质分离和从头算

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摘要

The complexes of HArF, HKrF, and HKrCl with nitrogen molecules have been studied computationally and experimentally. With the help of computations the experimental data can be interpreted as showing the presence of two complex configurations, one linear and one bent. Vibrational properties of the studied molecules are very sensitive to the intermolecular interactions and complexation induces an exceptionally large blueshift (>100 cm⁻¹ for HKrCl) to the H–Ar and H–Kr stretching frequency, especially for the linear configurations. The interaction energies without zero-point energy correction are between 400 and 800 cm⁻¹. According to the energy decomposition scheme, the electrostatic forces provide the most important interaction in the linear complex configurations. For the bent complexes, electrostatic and dispersion forces are competing as a leading attractive interaction.PACS: 33.20.Ea, 31.15.Ar
机译:HArF,HKrF和HKrCl与氮分子的配合物已通过计算和实验研究。借助计算,可以将实验数据解释为显示了两种复杂配置的存在,一种是线性的,一种是弯曲的。被研究分子的振动特性对分子间的相互作用非常敏感,并且络合会引起H-Ar和H-Kr拉伸频率异常大的蓝移(对于HKrCl,> 100 cm -1),特别是对于线性构型。没有零点能量校正的相互作用能在400和800cm -1之间。根据能量分解方案,静电力在线性复杂构型中提供了最重要的相互作用。对于弯曲的复合物,静电力和色散力作为主要的吸引力相互作用而竞争.PACS:33.20.Ea,31.15.Ar

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