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Computational IR spectroscopy of water: OH stretch frequencies, transition dipoles, and intermolecular vibrational coupling constants

机译:水的计算红外光谱:OH拉伸频率,跃迁偶极子和分子间振动耦合常数

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摘要

The Hessian matrix reconstruction method initially developed to extract the basis mode frequencies, vibrational coupling constants, and transition dipoles of the delocalized amide I, II, and III vibrations of polypeptides and proteins from quantum chemistry calculation results is used to obtain those properties of delocalized O-H stretch modes in liquid water. Considering the water symmetric and asymmetric O-H stretch modes as basis modes, we here develop theoretical models relating vibrational frequencies, transition dipoles, and coupling constants of basis modes to local water configuration and solvent electric potential. Molecular dynamics simulation was performed to generate an ensemble of water configurations that was in turn used to construct vibrational Hamiltonian matrices. Obtaining the eigenvalues and eigenvectors of the matrices and using the time-averaging approximation method, which was developed by the Skinner group, to calculating the vibrational spectra of coupled oscillator systems, we could numerically simulate the O-H stretch IR spectrum of liquid water. The asymmetric line shape and weak shoulder bands were quantitatively reproduced by the present computational procedure based on vibrational exciton model, where the polarization effects on basis mode transition dipoles and inter-mode coupling constants were found to be crucial in quantitatively simulating the vibrational spectra of hydrogen-bond networking liquid water.
机译:最初开发的Hessian矩阵重建方法用于从量子化学计算结果中提取多肽和蛋白质的离域酰胺I,II和III振动的基模频率,振动耦合常数和跃迁偶极子,用于获得离域OH的那些特性。液态水中的拉伸模式。考虑到水对称和不对称的O-H拉伸模式为基本模式,我们在此开发理论模型,将振动频率,跃迁偶极子以及基本模式的耦合常数与局部水构型和溶剂电势联系起来。进行了分子动力学模拟以产生水构型的合奏,该水构调又被用于构造振动哈密顿矩阵。获得矩阵的特征值和特征向量,并使用由Skinner组开发的时间平均近似方法,计算耦合振荡器系统的振动谱,我们可以对液态水的O-H拉伸IR谱进行数值模拟。通过基于振动激子模型的本计算程序,定量地再现了不对称线形和弱的肩带,其中发现基模跃迁偶极子的极化效应和模间耦合常数对于定量模拟氢的振动谱至关重要键网状液态水。

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