Hayashi Tomoyuki, la Cour Jansen Thomas, Zhuang Wei, Mukamel Shaul
Department of Chemistry, University of California, Irvine, California 92697-2025, USA.
J Phys Chem A. 2005 Jan 13;109(1):64-82. doi: 10.1021/jp046685x.
An ab initio MP2 vibrational Hamiltonian of HOD in an external electrostatic potential parametrized by the electric field and its gradient-tensor is constructed. By combining it with the fluctuating electric field induced by the D(2)O solvent obtained from molecular dynamics simulations, we calculate the infrared absorption of the O-H stretch. The resulting solvent shift and infrared line shape for three force fields (TIP4P, SPC/E, and SW) are in good agreement with the experiment. A collective coordinate response for the solvent effect is constructed by identifying the main electrostatic field and gradient components contributing to the line shape. This allows a realistic stochastic Liouville equation simulation of the line shapes which is not restricted to Gaussian frequency fluctuations.
构建了一个在由电场及其梯度张量参数化的外部静电势中HOD的从头算MP2振动哈密顿量。通过将其与从分子动力学模拟获得的D(2)O溶剂诱导的波动电场相结合,我们计算了O-H伸缩振动的红外吸收。对于三种力场(TIP4P、SPC/E和SW)得到的溶剂位移和红外线形与实验结果吻合良好。通过识别对线形有贡献的主要静电场和梯度分量,构建了溶剂效应的集体坐标响应。这使得能够对线形进行现实的随机刘维尔方程模拟,该模拟不限于高斯频率波动。