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首页> 外文期刊>Acta Chimica Slovenica >Third-Order Nonlinear Optical Properties of a Carboxylic Acid Derivative
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Third-Order Nonlinear Optical Properties of a Carboxylic Acid Derivative

机译:羧酸衍生物的三阶非线性光学性质

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We report a study of the structural and electrical properties of a carboxylic acid derivative (CAD) with structural formula C5H8O2 ((E)-pent-2-enoic acid). Using the Moller-Plesset Perturbation Theory (MP2) and the Density Functional Theory (DFT/CAM-B3LYP) with the 6-311++G(d,p) basis set the dipole moment, the linear polarizability and the first and second hyperpolarizabilities are calculated in presence of static and dynamic electric field. Through the supermolecule approach the crystalline phase of the carboxylic acid derivative is simulated and the environment polarization effects on the electrical parameters are studied. Static and dynamic estimation of the linear refractive index and the third-order nonlinear susceptibility of the crystal are obtained and compared with available experimental results. The characteristic vibrational modes and functional groups present in CAD were analyzed by Fourier Transform Infrared Spectrum (FT-IR) in the region of 400-4000 cm(-1). Through the Hirshfeld surface analysis the molecular structure and the vibrational modes properties of the CAD crystal are explored. The effects of solvent medium on the molecular properties are taken into account through the Polarizable Continuum Model (PCM). Also, the frontiers molecular orbitals, the band gap energy, and the global chemical reactivity descriptors are discussed. All the properties studied suggest that the present material may be considered for nonlinear optical material.
机译:我们报告了羧酸衍生物(CAD)的结构和电性质,具有结构式C5H8O2((e) - 2-烯酸)。使用Moller-Plesset扰动理论(MP2)和密度泛函理论(DFT / CAM-B3LYP),具有6-311 ++ G(D,P)的基础设置偶极矩,线性极化性和第一和第二超积分在存在静态和动态电场的情况下计算。通过超细分方法,模拟羧酸衍生物的结晶相,并研究了对电参数的环境极化效应。获得了线性折射率的静态和动态估计和晶体的三阶非线性敏感性,与可用的实验结果进行了比较。通过傅里叶变换红外光谱(FT-IR)分析CAD中存在的特征振动模式和官能团,在400-4000cm(-1)区域中。通过HIRSHFELD表面分析,探讨了CAD晶体的分子结构和振动模式。通过可极化的连续体模型(PCM)考虑溶剂培养基对分子性质的影响。而且,讨论了前端分子轨道,带隙能量和全球化学反应性描述符。所研究的所有特性表明,可以考虑本材料以用于非线性光学材料。

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