首页> 外文期刊>Journal of Molecular Structure >A new Schiff base, (E)-4-((4-chlorophenylimino) methyl)-2-methoxyphenol: Crystal structure, thermal behavior, solid-state fluorescence, DFT calculations and FT NMR spectral analysis
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A new Schiff base, (E)-4-((4-chlorophenylimino) methyl)-2-methoxyphenol: Crystal structure, thermal behavior, solid-state fluorescence, DFT calculations and FT NMR spectral analysis

机译:一种新的席夫碱,(E)-4-((4-氯苯基亚氨基)甲基)-2-甲氧基苯酚:晶体结构,热行为,固态荧光,DFT计算和FT NMR光谱分析

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摘要

A new Schiff base, (E)-4-((4-chlorophenylimino) methyl)-2-methoxyphenol (4CMP), was synthesized and grown as single crystal by slow evaporation solution growth technique. The crystal structure of the compound, elucidated from single crystal X-ray diffraction analysis, was in good agreement with the calculated structure using Density functional theory (DFT) with B3LYP/6-311G(d,p) basis set of Gaussian 03 program. The physicochemical characterization of the title compound was further performed by modern spectroscopic techniques like FT-IR, FT-Raman, FT-NMR (both 1D and 2D), UV–Vis–NIR, and fluorescence analysis. UV–Vis–NIR spectrum showed the transparent nature of 4CMP crystal in the region 500– 1200 nm. Solid state fluorescence of the crystal indicate that the title compound can serve as a photoactive material. Thermogravimetric analysis revealed that the grown crystal is thermally stable up to a temperature of 225℃. From DSC, the phase transition of the compound was found to be at 131℃. The dependence of both dielectric constant and dielectric loss with frequency was measured. Microscopic nonlinear optical properties like dipole moment (μ) and first order hyperpolarizability (b) were also measured using DFT.
机译:合成了一种新的席夫碱,(E)-4-((4-氯苯基亚氨基)甲基)-2-甲氧基苯酚(4CMP),并通过缓慢蒸发溶液生长技术使其生长为单晶。通过单晶X射线衍射分析阐明了该化合物的晶体结构,该结果与使用高斯03程序的B3LYP / 6-311G(d,p)基础集的密度泛函理论(DFT)所计算的结构非常吻合。标题化合物的理化特性通过现代光谱技术如FT-IR,FT-Raman,FT-NMR(一维和二维),UV-Vis-NIR和荧光分析进一步进行。 UV-Vis-NIR光谱显示4CMP晶体在500-1200 nm范围内具有透明性。晶体的固态荧光表明标题化合物可以用作光敏材料。热重分析表明,所生长的晶体在高达225℃的温度下具有热稳定性。通过DSC,发现该化合物的相变为131℃。测量了介电常数和介电损耗与频率的关系。还使用DFT测量了微观非线性光学性质,如偶极矩(μ)和一阶超极化率(b)。

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