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首页> 外文期刊>The Journal of Chemical Physics >Accurate high level ab initio-based global potential energy surface and dynamics calculations for ground state of CH2+
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Accurate high level ab initio-based global potential energy surface and dynamics calculations for ground state of CH2+

机译:精确的,从头开始的高水平基于全球的势能面和CH2 +基态的动力学计算

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摘要

A global many-body expansion potential energy surface is reported for the electronic ground state of CH2+ by fitting high level ab initio energies calculated at the multireference configuration interaction level with the aug-cc-pV6Z basis set. The topographical features of the new global potential energy surface are examined in detail and found to be in good agreement with those calculated directly from the raw ab initio energies, as well as previous calculations available in the literature. In turn, in order to validate the potential energy surface, a test theoretical study of the reaction CH+(X-1 Sigma(+)) + H(S-2) -> C+(P-2) + H-2(X-1 Sigma(+)(g)) has been carried out with the method of time dependent wavepacket on the title potential energy surface. The total integral cross sections and the rate coefficients have been calculated; the results determined that the new potential energy surface can both be recommended for dynamics studies of any type and as building blocks for constructing the potential energy surfaces of larger C+/H containing systems. (c) 2015 AIP Publishing LLC.
机译:通过使用aug-cc-pV6Z基集拟合在多参考构型相互作用水平计算的高水平从头算能量,报告了CH2 +电子基态的全局多体膨胀势能面。详细研究了新的全球势能面的形貌特征,发现它们与直接从原始从头算出的能量以及文献中已有的计算结果直接吻合。反过来,为了验证势能面,对反应CH +(X-1 Sigma(+))+ H(S-2)-> C +(P-2)+ H-2(X)进行了测试理论研究-1 Sigma(+)(g))已通过时变波包的方法在标题势能面上进行。已经计算出总积分截面和比率系数;结果确定新的势能面既可以推荐用于任何类型的动力学研究,又可以作为构造较大的含C + / H的系统的势能面的基础。 (c)2015 AIP Publishing LLC。

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