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动态固态查尔酮衍生物的结构、光电和非线性光学性质的计算研究

Computational study of structural, optoelectronic and nonlinear optical properties of dynamic solid-state chalcone derivatives.

作者信息

Chaudhry Aijaz Rasool, Irfan Ahmad, Muhammad Shabbir, Al-Sehemi Abdullah G, Ahmed R, Jingping Zhang

机构信息

Research Center for Advanced Materials Science (RCAMS), King Khalid University, Abha 61413, P.O. Box 9004, Saudi Arabia; Department of Physics, Faculty of Science, King Khalid University, Abha 61413, P.O. Box 9004, Saudi Arabia.

Research Center for Advanced Materials Science (RCAMS), King Khalid University, Abha 61413, P.O. Box 9004, Saudi Arabia; Department of Chemistry, Faculty of Science, King Khalid University, Abha 61413, P.O. Box 9004, Saudi Arabia.

出版信息

J Mol Graph Model. 2017 Aug;75:355-364. doi: 10.1016/j.jmgm.2017.05.012. Epub 2017 May 29.

Abstract

In the present study, we use the state of art density functional theory (DFT) techniques to calculate the structural, optoelectronic and nonlinear optical (NLO) properties for two novel chalcone derivatives. The geometrical structures of chalcone derivatives compound 1 and 2 are optimized using periodic boundary conditions (PBC) in solid-state phase as well as isolated single molecular geometry in the gas phase. The reasonable agreement is found among experimental, solid-state and gas phase single molecular geometries, which provide us, further confidence to explore the potential of above-entitled derivatives as good functional materials for electro-optical applications. For instance, the frequency dependent real parts of dielectric functions are calculated for compound 1 and 2. The maximum value of real part of the dielectric function for compound 1 and 2 at 0eV are computed as 4.35 and 6.68 for the polarization vectors of (001) directions, respectively, which reveals the fact that the compound 1 and 2 might be good charge transport materials. The reflectivities of the compound 1 and 2 are 0.64 and 0.45 revealing that the compound 2 might be more efficient material for organic photovoltaic (OPV) applications. The results of the refractive index improved by doping the strong electron withdrawing groups (EWGs) shows that the compound 2 might be good refractor of the photon as compared to compound 1. The calculated values for static second-order polarizability are 3498 and 10464 a. u. and for frequency dependent second harmonic generations are 2557 and 6429 a. u. for compound 1 and 2, respectively, which indicates their significant potential for possible nonlinear optical applications.

摘要

在本研究中,我们使用最先进的密度泛函理论(DFT)技术来计算两种新型查尔酮衍生物的结构、光电和非线性光学(NLO)性质。查尔酮衍生物化合物1和2的几何结构在固态相中使用周期性边界条件(PBC)以及在气相中使用孤立的单分子几何结构进行了优化。在实验、固态和气相单分子几何结构之间发现了合理的一致性,这为我们进一步探索上述衍生物作为电光应用的良好功能材料的潜力提供了信心。例如,计算了化合物1和2的介电函数的频率相关实部。对于(001)方向的极化矢量,化合物1和化合物2在0eV时介电函数实部的最大值分别计算为4.35和6.68,这表明化合物1和2可能是良好的电荷传输材料。化合物1和2的反射率分别为0.64和0.45,这表明化合物2可能是更高效的有机光伏(OPV)应用材料。通过掺杂强吸电子基团(EWG)提高折射率的结果表明,与化合物1相比,化合物2可能是更好的光子折射体。化合物1和2的静态二阶极化率计算值分别为3498和10464 a.u.,频率相关的二次谐波产生计算值分别为2557和6429 a.u.,这表明它们在可能的非线性光学应用中具有显著潜力。

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