首页> 外文期刊>The Journal of Chemical Physics >ISOTROPIC AND ANISOTROPIC INTERMOLECULAR DYNAMICS OF LIQUIDS STUDIED BY FEMTOSECOND POSITION-SENSITIVE KERR LENS SPECTROSCOPY
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ISOTROPIC AND ANISOTROPIC INTERMOLECULAR DYNAMICS OF LIQUIDS STUDIED BY FEMTOSECOND POSITION-SENSITIVE KERR LENS SPECTROSCOPY

机译:毫微秒位敏感克尔透镜光谱研究液体的各向同性和分子间动力学

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Femtosecond Fourier-transform position-sensitive Ken lens spectroscopy is shown to be a powerful technique for obtaining the isotropic and anisotropic components of the low-frequency, intermolecular Raman spectra of liquids. The isotropic and anisotropic spectral features are compared for liquids benzene, toluene, and benzonitrile in order to characterize the intermolecular motions in terms of their relative contribution to the different elements of the Raman susceptibility. We observe that the spectral profiles for the isotropic and anisotropic components of the Raman susceptibility tensor of both benzene and toluene are identical within our experimental uncertainty. A frequency-independent depolarization ratio of 0.7+/- 0.1 and 0.75+/-0.1 are obtained throughout the 0-150 cm(-1) region, respectively, for benzene and toluene, respectively. This ratio indicates that the collective intermolecular vibrations can be described as being ''depolarized.'' On the other hand, we observe that the intermolecular depolarization ratio obtained for benzonitrile is frequency-dependent, gradually decreasing from 0.7 near 0 cm(-1) to approximately 0.5 at 150 cm(-1). This observation indicates that the intermolecular interactions in benzonitrile become increasingly ''polarized'' as the frequency is increased. These data are discussed in terms of the distinct molecular properties of each liquid and the differences in their overall intermolecular interaction energies. (C) 1997 American Institute of Physics. [References: 65]
机译:飞秒傅立叶变换位置敏感的Ken透镜光谱显示出一种强大的技术,可用于获取液体的低频分子间拉曼光谱的各向同性和各向异性成分。比较了液体苯,甲苯和苄腈的各向同性和各向异性光谱特征,以便根据分子间运动对拉曼敏感性的不同元素的相对贡献来表征分子间运动。我们观察到在我们的实验不确定性范围内,苯和甲苯的拉曼磁化率张量的各向同性和各向异性成分的光谱曲线是相同的。苯和甲苯分别在0-150 cm(-1)区域分别获得0.7 +/- 0.1和0.75 +/- 0.1的频率无关去极化比。此比率表明,集体分子间的振动可以描述为“去极化”。另一方面,我们观察到苄腈获得的分子间去极化比率是频率依赖性的,从0 cm(-1)附近的0.7逐渐减小在150 cm(-1)时约为0.5。该观察结果表明,随着频率的增加,苄腈中的分子间相互作用变得越来越“极化”。这些数据是根据每种液体的独特分子特性及其整体分子间相互作用能的差异进行讨论的。 (C)1997美国物理研究所。 [参考:65]

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