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首页> 外文期刊>The Journal of Chemical Physics >Five-dimensional ab initio potential energy surface and predicted infrared spectra of H2-CO2 van der Waals complexes
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Five-dimensional ab initio potential energy surface and predicted infrared spectra of H2-CO2 van der Waals complexes

机译:H2-CO2范德华配合物的五维从头算势面和预测的红外光谱

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The authors present a new five-dimensional potential energy surface for H2-CO2 including the Q3 normal mode for the v3 antisymmetric stretching vibration of the CO2 molecule.The potential energies were calculated using the supermolecular approach with the full counterpoise correction at the CCSD(T) level with an aug-cc-pVTZ basis set supplemented with bond functions.The global minimum is at two equivalent T-shaped coplanar configurations with a well depth of 219.68 cm~(-1).The rovibrational energy levels for four species of H2-CO2 (paraH_2-,orthoH_2-,paraD_2-,and orthoD_2-CO2) were calculated employing the discrete variable representation (DVR) for radial variables and finite basis representation (FBR) for angular variables and the Lanczos algorithm.Our calculations showed that the off-diagonal intra-and intermolecular vibrational coupling could be neglected,and separation of the intramolecular vibration by averaging the total Hamiltonian with the wave function of a specific vibrational state of CO2 should be a good approximation with high accuracy.The calculated band origin shift in the infrared spectra in the v3 region of CO2 is-0.113 cm~(-1) for paraH_2-CO2 and-0.099 cm~(-1) for orthoH_2-CO2,which agrees well with the observed values of-0.198 and-0.096 cm-1.The calculated rovibrational spectra for H2-CO2 are consistent with the available experimental spectra.For D2-CO2,it is predicted that only alpha-type transitions occur for paraD2-CO2,while both alpha-type and b-type transitions are significant for orthoD2-CO2.
机译:作者提出了一种新的H2-CO2五维势能面,包括Q3正态模式下的CO2分子v3反对称拉伸振动。势能是使用超分子方法并在CCSD(T )水平,并以aug-cc-pVTZ基集补充键函数。整体最小值是两个等效的T形共面结构,井深为219.68 cm〜(-1)。四种H2的旋转振动能级通过使用径向变量的离散变量表示(DVR)和角度变量的有限基表示(FBR)和Lanczos算法来计算-CO2(paraH_2-,orH2_2,paraD_2-和orthoD_2-CO2)。可以忽略非对角线内和分子间的振动耦合,并且可以通过将总哈密顿量与特定振动的波动函数平均化来分离分子内振动l CO 2的状态应该是高精度的良好近似值。对于paraH_2-CO2和-0.099 cm〜(-1),在CO2的v3区域中红外光谱的计算谱带原点偏移为-0.113 cm〜(-1)对于orthoH_2-CO2,与观测值-0.198和-0.096 cm-1非常吻合.H2-CO2的计算振动光谱与可用的实验光谱一致。对于D2-CO2,预计只有α- paraD2-CO2发生类型转变,而orthoD2-CO2则同时发生α型转变和b型转变。

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