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CH4·F- 配合物的振动动力学。

Vibrational dynamics of the CH4·F- complex.

机构信息

Theoretische Chemie, Fakultät für Chemie, Universität Bielefeld, Universitätsstrasse 25, D-33615 Bielefeld, Germany.

出版信息

J Phys Chem A. 2012 Nov 26;116(46):11249-59. doi: 10.1021/jp3052642. Epub 2012 Jul 23.

Abstract

Motivated by recent photodetachment experiments studying resonance structures in the transition-state region of the F + CH(4) → HF + CH(3) reaction, the vibrational dynamics of the precursor complex CH(4)·F(-) is investigated. Delocalized vibrational eigenstates of CH(4)·F(-) are computed in full dimensionality employing the multiconfigurational time-dependent Hartree (MCTDH) approach and a recently developed iterative diagonalization approach for general multiwell systems. Different types of stereographic coordinates are used, and a corresponding general N-body kinetic energy operator is given. The calculated tunneling splittings of the ground and the lower vibrational excited states of the CH(4)·F(-) complex do not significantly exceed 1 cm(-1). Comparing the converged MCTDH results for localized vibrational excitations with existing results obtained by normal-mode-based (truncated) vibrational configuration interaction calculations, significantly lower frequencies are found for excitations in the intermolecular modes.

摘要

受最近研究 F + CH(4) → HF + CH(3) 反应过渡态区域共振结构的光离解实验的启发,我们研究了前体复合物 CH(4)·F(-)的振动动力学。采用多组态含时哈特里(MCTDH)方法和最近开发的用于一般多势阱系统的迭代对角化方法,在全维空间中计算了 CH(4)·F(-)的离域振动本征态。使用了不同类型的立体坐标,并给出了相应的一般 N 体动能算子。计算得出的 CH(4)·F(-) 复合物的基态和较低振动激发态的隧道分裂并不显著超过 1 cm(-1)。将局域振动激发的收敛 MCTDH 结果与基于正则模式的(截断)振动组态相互作用计算得到的现有结果进行比较,发现分子间模式的激发频率明显较低。

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