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Molecular dynamics study of vibrational energy relaxation of CN~- in H_2O and D_2O solutions: An application of path integral influence functional theory to multiphonon processes

机译:H_2O和D_2O溶液中CN〜-振动能弛豫的分子动力学研究:路径积分影响泛函理论在多声子过程中的应用

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Vibrational energy relaxation of a cyanide ion in the aqueous solutions has been investigated. Both the solute (CN~-) and the solvent (H_2O or D_2O) were treated quantum mechanically based upon the path integral influence functional formalism assuming a harmonic oscillator bath. Single and multiphonon spectral densities were evaluated numerically from the normal modes of the solvent, i.e., the bath phonons, and the linear and nonlinear coupling constants between the C-N stretching coordinate and the phonons for 30 different quenched and instantaneous solvation structures generated by molecular dynamics calculations. The method combined with the normal mode analysis successfully presented not only the time constant of the relaxation but also information about what sorts of the solvent bath modes are responsible for the relaxation process. We show that two-phonon process caused by the nonlinear coupling between the C-N stretching mode and two bath phonons are shown to be mostly responsible for the present system. It is found, too, that the coupling of the system with two bath rotational libration modes and the coupling with a bath bending mode and a bath rotational libration mode are dominant in the relaxation process in an H_2O solution, while, in a D_2O solution, the coupling with the bath bending mode and bath rotational libration mode is most important. The normal modes that represent large motion of the water molecules inside the first and second solvation shells of the cyanide ion are particularly significant for the relaxation.
机译:已经研究了氰化物离子在水溶液中的振动能弛豫。基于路径积分影响泛函,假设谐波振荡器浴,对溶质(CN〜-)和溶剂(H_2O或D_2O)进行量子力学处理。根据溶剂的正常模式(即浴声子),以及通过分子动力学计算生成的30种不同的淬灭和瞬时溶剂化结构,CN拉伸坐标与声子之间的线性和非线性耦合常数,以数字方式评估了单声子和多声子的光谱密度。 。该方法与正常模式分析相结合,不仅成功地给出了松弛时间常数,而且还提供了有关哪种溶剂浴模式导致松弛过程的信息。我们表明,由C-N拉伸模式和两个浴声子之间的非线性耦合引起的两声子过程是造成本系统的主要原因。还发现,在H_2O溶液的弛豫过程中,具有两个浴池旋转释放模式的系统的耦合以及与浴池弯曲模式和浴池旋转自由模式的耦合是主要的,而在D_2O溶液中,最重要的是与槽弯曲模式和槽旋转释放模式的耦合。代表氰化物离子的第一个和第二个溶剂化壳内部的水分子大运动的法线模式对于弛豫特别重要。

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