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液态水的极化拉曼光谱、瞬态红外吸收各向异性以及OH伸缩振动模式离域程度的时域计算。

Time-domain calculations of the polarized Raman spectra, the transient infrared absorption anisotropy, and the extent of delocalization of the OH stretching mode of liquid water.

作者信息

Torii Hajime

机构信息

Department of Chemistry, School of Education, Shizuoka University, 836 Ohya, Shizuoka 422-8529, Japan.

出版信息

J Phys Chem A. 2006 Aug 3;110(30):9469-77. doi: 10.1021/jp062033s.

DOI:10.1021/jp062033s
PMID:16869698
Abstract

The polarized Raman spectrum and the time dependence of the transient infrared (TRIR) absorption anisotropy are calculated for the OH stretching mode of liquid water (neat liquid H2O) by using time-domain formulations, which include the effects of both the diagonal frequency modulations (of individual oscillators) induced by the interactions between the dipole derivatives and the intermolecular electric field, and the off-diagonal (intermolecular) vibrational coupling described by the transition dipole coupling (TDC) mechanism. The IR spectrum of neat liquid H2O and the TRIR anisotropy of a liquid mixture of H2O/HDO/D2O are also calculated. It is shown that the calculated features of these optical signals, including the temperature dependence of the polarized Raman and IR spectra, are in reasonable agreement with the experimental results, indicating that the frequency separation between the isotropic and anisotropic components of the polarized Raman spectrum and the rapid decay (approximately 0.1 ps) of the TRIR anisotropy of the OH stretching mode of neat liquid H2O are mainly controlled by the resonant intermolecular vibrational coupling described by the TDC mechanism. Comparing with the time evolution of vibrational excitations, it is suggested that the TRIR anisotropy decays in the time needed for the initially localized vibrational excitations to delocalize over a few oscillators. It is also shown that the enhancement of the dipole derivatives by the interactions with surrounding molecules is an important factor in generating the spectral profiles of the OH stretching Raman band. The time-domain behavior of the molecular motions that affect the spectroscopic features is discussed.

摘要

通过使用时域公式,计算了液态水(纯液态H₂O)的OH伸缩振动模式的偏振拉曼光谱和瞬态红外(TRIR)吸收各向异性的时间依赖性,该公式包括由偶极导数与分子间电场相互作用引起的(单个振子的)对角频率调制效应,以及由跃迁偶极耦合(TDC)机制描述的非对角(分子间)振动耦合效应。还计算了纯液态H₂O的红外光谱以及H₂O/HDO/D₂O液态混合物的TRIR各向异性。结果表明,这些光信号的计算特征,包括偏振拉曼光谱和红外光谱的温度依赖性,与实验结果合理吻合,这表明纯液态H₂O的OH伸缩振动模式的偏振拉曼光谱的各向同性和各向异性成分之间的频率分离以及TRIR各向异性的快速衰减(约0.1 ps)主要由TDC机制描述的共振分子间振动耦合控制。与振动激发的时间演化相比,表明TRIR各向异性在初始局域化振动激发在几个振子上离域所需的时间内衰减。还表明,与周围分子的相互作用对偶极导数的增强是产生OH伸缩拉曼带光谱轮廓的一个重要因素。讨论了影响光谱特征的分子运动的时域行为。

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