首页> 外文期刊>The Journal of Chemical Physics >Classical trajectory study of CD_2OH~+ -> CDO~+ + HD on potential energy surfaces constructed at various quantum chemical levels: Scaling of product mode-specific energies
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Classical trajectory study of CD_2OH~+ -> CDO~+ + HD on potential energy surfaces constructed at various quantum chemical levels: Scaling of product mode-specific energies

机译:CD_2OH〜+-> CDO〜+ + HD在不同量子化学能级上构建的势能表面的经典轨迹研究:产物模比能的缩放

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Potential energy surfaces for the title reaction have been constructed by interpolation of 40 local potentials along the intrinsic reaction coordinate obtained by quantum chemical calculations at the semiempirical, Hartree-Fock (HF), post-HF, and density functional theory (DFT) levels of theory. Classical trajectory calculations have been carried out and the average product mode-specific energies originating from the reverse barriers have been estimated. When normalized to the reverse barrier heights, the mode-specific energies evaluated at the HF, post-HF and theory DFT levels have been found to be comparable, indicating that the energy partitioning data are scaled to the barrier heights at these levels of theory. Namely, dynamical results obtained on potential energy surfaces constructed at moderate quantum chemical levels were similar (within approx 5%) to those at higher levels. It has been found theoretically that classical dynamics on two potential energy surfaces related by simple scaling results in scaled mode-specific energies. As a guideline for general cases, the similarity factor between two potential energy surfaces has been defined, which shows a good correlation with the scalability of the energy partitioning data.
机译:标题反应的势能面是通过沿内在反应坐标内插40个局部势而构造的,该内在反应坐标是通过量子化学计算在半经验,Hartree-Fock(HF),HF后和密度泛函理论(DFT)级别获得的理论。进行了经典的轨迹计算,并估计了来自反向势垒的平均乘积模式特定的能量。当归一化为反向势垒高度时,发现在HF,HF后和理论DFT级别评估的模态比能量具有可比性,这表明能量分配数据已按这些理论级别上的势垒高度缩放。即,在中等量子化学能级上构建的势能表面上获得的动力学结果与较高能级上的动力学结果相似(约5%)。从理论上已经发现,通过简单缩放而在两个势能表面上的经典动力学会导致缩放后的特定模式能量。作为一般情况的准则,已定义了两个势能面之间的相似因子,这与能量划分数据的可伸缩性显示出良好的相关性。

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