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采用 HF 和 DFT(B3LYP/B3PW91)从头算计算法研究 4-氯-2-氟甲苯的 FT-IR 和 FT-Raman 光谱及振动。

FT-IR and FT-Raman spectra and vibrational investigation of 4-chloro-2-fluoro toluene using ab initio HF and DFT (B3LYP/B3PW91) calculations.

机构信息

Department of Physics, A.V.C. College, Mayiladuthurai, Tamilnadu, India.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2011 Jan;78(1):429-36. doi: 10.1016/j.saa.2010.11.005. Epub 2010 Nov 23.

Abstract

FT-IR (4000-100 cm(-1)) and FT-Raman (4000-100 cm(-1)) spectra of solid sample of 4-chloro-2-fluoro toluene (4Cl2FT) have been recorded using Bruker IFS 66 V spectrometer. Ab initio-HF (HF/6-311++G (d, p)) and DFT (B3LYP/6-311++G and B3PW91/6-311++G (d, p)) calculations have been performed giving energies, optimized structures, harmonic vibrational frequencies, depolarization ratios, IR intensities, Raman activities. The vibrational frequencies are calculated and scaled values are compared with FT-IR and FT-Raman experimental values. The isotropic HF and DFT analyses showed good agreement with experimental observations. The differences between the observed and scaled wave number values of most of the fundamentals are very small in B3LYP than HF. Comparison of the simulated spectra provides important information about the ability of the computational method (B3LYP) to describe the vibrational modes. The influences of substitutions on the geometry of molecule and its normal modes of vibrations have also been discussed. The changes made by substitutions on the benzene are much responsible for the non-linearity of the molecule. This is an attractive entity for the future studies of non-linear optics.

摘要

使用 Bruker IFS 66 V 光谱仪记录了固体 4-氯-2-氟甲苯(4Cl2FT)的 FT-IR(4000-100 cm(-1)) 和 FT-Raman(4000-100 cm(-1)) 光谱。进行了从头算 HF(HF/6-311++G(d,p))和 DFT(B3LYP/6-311++G 和 B3PW91/6-311++G(d,p))计算,给出了能量、优化结构、简正振动频率、去偏振比、IR 强度、拉曼活性。计算了振动频率并将标度值与 FT-IR 和 FT-Raman 实验值进行了比较。各向同性 HF 和 DFT 分析与实验观察结果吻合较好。在 B3LYP 中,大多数基频的观察到的和标度的波数值之间的差异比 HF 小。模拟光谱的比较提供了有关计算方法(B3LYP)描述振动模式的能力的重要信息。取代对分子几何形状及其正常振动模式的影响也进行了讨论。苯环上的取代对分子的非线性有很大的影响。这是未来非线性光学研究的一个有吸引力的实体。

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