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Synthesis, growth and characterization of a long-chain π-conjugation based methoxy chalcone derivative single crystal; a third order nonlinear optical material for optical limiting applications

机译:基于长链π共轭的甲氧基查尔酮衍生物单晶的合成,生长和表征用于光学限制应用的三阶非线性光学材料

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摘要

Organic material (chalcone derivative 4-[(1E)-3-(4-methoxyphenyl)-3-oxoprop-1-en-1-yl]phenyl 4-methylbenzene-1-sulfonate {4MPMS}) has been grown by solvent evaporation technique. The structural properties have been carried out by powder XRD and single crystal XRD data. The linear optical properties (band gap, extinction co-efficient, optical conductivity and complex dielectric constant) were studied by UV-VIS-NIR spectrometer. In addition, defect states were identified and analyzed by creation of color center mechanism using photo luminescence spectroscopy. In Thermal analysis, crystal (4MPMS) is found to be stable up to 158 degrees C. Hence it may be used for the fabrication of device below the melting point. The electrical properties (dielectric constant and dielectric loss factor) have been carried out. The electronic polarizability is the major contribution for the high frequency dielectric constant values. Therefore, using theoretical aspects, the electronic polarizability values were calculated using Clausius-Mossotti relation as well as band structure approach of Penn model. Laser damage threshold for 4MPMS crystal was determined by using Nd:YAG laser with 532 nm. The nonlinear optical absorption coefficient and third order nonlinear optical susceptibility (chi((3))) values are reasonably larger than those of the other chalcone derivative crystals. High second order molecular hyperpolarizability enhances the third order optical nonlinear efficiency. Increased chi((3)) and coupling factor (less than 1/3) indicates that the optical nonlinearity is electronic in origin. The behavior of nonlinear optical absorption curve confirms that the mechanism belongs to reverse saturable absorption (RSA).
机译:通过溶剂蒸发生长了有机材料(查尔酮衍生物4-[((1E)-3-(4-甲氧基苯基)-3-氧代丙-1-烯-1-基]苯基4-甲基苯-1-磺酸{4MPMS})技术。通过粉末XRD和单晶XRD数据进行了结构性能。用UV-VIS-NIR光谱仪研究了线性光学性质(带隙,消光系数,光导率和复介电常数)。此外,通过使用光致发光光谱学创建色心机制来识别和分析缺陷状态。在热分析中,发现晶体(4MPMS)在高达158摄氏度的温度下都是稳定的。因此,它可用于制造熔点以下的器件。已经实现了电性能(介电常数和介电损耗因子)。电子极化率是高频介电常数值的主要贡献。因此,利用理论方面,利用克劳修斯-莫索蒂(Clausius-Mossotti)关系以及Penn模型的能带结构方法计算了电子极化率值。使用532 nm的Nd:YAG激光确定4MPMS晶体的激光损伤阈值。非线性光吸收系数和三阶非线性光学磁化率(chi((3)))值比其他查尔酮衍生物晶体大。高二阶分子超极化性可增强三阶光学非线性效率。 chi((3))和耦合因子(小于1/3)增加表明光学非线性是电子起源的。非线性光学吸收曲线的行为证实该机制属于反向饱和吸收(RSA)。

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