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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Spectroscopy and potential energy surface of the H-2-CO2 van der Waals complex: experimental and theoretical studies
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Spectroscopy and potential energy surface of the H-2-CO2 van der Waals complex: experimental and theoretical studies

机译:H-2-CO2范德华配合物的光谱和势能面:实验和理论研究

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摘要

A 4-D ab initio potential energy surface is calculated for the intermolecular interaction of hydrogen and carbon dioxide, using the CCSD(T) method with a large basis set. The surface has a global minimum with a well depth of 212 cm(-1) and an intermolecular distance of 2.98 angstrom for a planar configuration with both the O-C-O and H-H axes perpendicular to the intermolecular axis. Bound state calculations are performed for the H-2-CO2 van der Waals complex with H-2 in both the para and ortho spin states, and the binding energy of paraH(2)-CO2 (50.4 cm(-1)) is found to be significantly less than that of orthoH(2)-CO2 (71.7 cm(-1)). The surface supports 7 bound intermolecular vibrational states for paraH(2)-CO2 and 19 for orthoH(2)-CO2, and the lower rotational levels with J <= 4 follow an asymmetric rotor pattern. The calculated infrared spectrum of paraH(2)-CO2 agrees well with experiment. For orthoH(2)-CO2, the ground state rotational levels allowed by symmetry are found to have (Ka, Kc) = (even, odd) or (odd, even). This somewhat unexpected fact enables the previously observed experimental spectrum to be assigned for the first time, in good agreement with theory, and indicates that the orientation of hydrogen is perpendicular to the intermolecular axis in the ground state of the orthoH(2)-CO2 complex.
机译:使用具有较大基础集的CCSD(T)方法,计算了氢与二氧化碳的分子间相互作用的4-D从头算势能面。对于O-C-O和H-H轴均垂直于分子间轴的平面配置,该表面具有一个全局最小值,其井深为212 cm(-1),分子间距离为2.98埃。在对位和邻位自旋状态下对H-2-CO2范德华配合物H-2进行束缚态计算,发现对位H(2)-CO2(50.4 cm(-1))的结合能显着小于orthoH(2)-CO2(71.7 cm(-1))。该表面支持paraH(2)-CO2的7个绑定的分子间振动状态和orthoH(2)-CO2的19个绑定的分子间振动状态,并且J <= 4的较低旋转水平遵循不对称的转子模式。 paraH(2)-CO2的红外光谱与实验吻合得很好。对于orthoH(2)-CO2,发现对称允许的基态旋转水平为(Ka,Kc)=(偶数,奇数)或(奇数,偶数)。这个有点出乎意料的事实使先前观察到的实验光谱能够首次与理论相吻合,并且表明氢的取向垂直于orthoH(2)-CO2络合物基态的分子间轴。

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