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基于密度泛函理论计算的羟基喹啉衍生物的光谱(FT-IR、FT-Raman、UV 和 NMR)研究、构象稳定性、NLO 性质、HOMO-LUMO 和 NBO 分析。

Spectroscopic (FT-IR, FT-Raman, UV and NMR) investigation, conformational stability, NLO properties, HOMO-LUMO and NBO analysis of hydroxyquinoline derivatives by density functional theory calculations.

机构信息

Department of Physics, Sri Sarada College for Women (Autonomous), Salem, India.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2013 Oct;114:449-74. doi: 10.1016/j.saa.2013.05.011. Epub 2013 May 30.

DOI:10.1016/j.saa.2013.05.011
PMID:23792240
Abstract

The FTIR and FT-Raman spectra of 2-hydroxyquinoline and its derivatives have been recorded in the region 4000-400 cm(-1) and 3500-100 cm(-1), respectively. The optimized geometry, frequency and intensity of the vibrational bands of these compounds were obtained by the density functional theory using 6-311++G(d,p) basis sets. The harmonic vibrational frequencies were calculated and the scaled values have been compared with experimental FTIR and FT-Raman spectra. A detailed interpretation of the infrared and Raman spectra were also reported based on total energy distribution (TED). The observed and the calculated frequencies are found to be in good agreement. The experimental spectra also coincide satisfactorily with those of theoretically simulated spectra. (1)H and (13)C NMR spectra were recorded and its corresponding nuclear magnetic resonance chemical shifts of the molecule were also calculated using the gauge independent atomic orbital (GIAO) method. UV-visible spectrum of the compound was recorded and the electronic properties HOMO and LUMO energies were measured by time-dependent (TD-DFT) approach. Molecular stability and bond strength were investigated by applying the natural bond orbital analysis (NBO). The calculated HOMO and LUMO energies show that charge transfer occurs in the molecules. In addition, the non-linear optical properties were discussed from the dipole moment values and excitation wavelength in the UV-visible region.

摘要

本文记录了 2-羟基喹啉及其衍生物在 4000-400 cm(-1) 和 3500-100 cm(-1) 区域的傅里叶变换红外(FTIR)和傅里叶变换拉曼(FT-Raman)光谱。采用密度泛函理论(DFT),在 6-311++G(d,p)基组下,优化了这些化合物的几何形状、振动带的频率和强度。计算了谐振动频率,并将比例值与实验 FTIR 和 FT-Raman 光谱进行了比较。还根据总能量分布(TED)对红外和拉曼光谱进行了详细解释。观察到的和计算出的频率被发现非常吻合。实验光谱也与理论模拟光谱非常吻合。(1)H 和(13)C NMR 谱也被记录下来,并用无规轨道(GIAO)方法计算了相应的核磁共振化学位移。记录了化合物的紫外-可见光谱,并通过时间相关(TD-DFT)方法测量了分子的 HOMO 和 LUMO 能量。通过自然键轨道分析(NBO)研究了分子稳定性和键强度。计算出的 HOMO 和 LUMO 能量表明电荷转移发生在分子中。此外,还从紫外-可见区域的电偶极矩值和激发波长讨论了非线性光学性质。

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