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首页> 外文期刊>Journal of Computational Electronics >Quantum chemical investigation on molecular structure, vibrational, photophysical and nonlinear optical properties of L-threoninium picrate: an admirable contender for nonlinear applications
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Quantum chemical investigation on molecular structure, vibrational, photophysical and nonlinear optical properties of L-threoninium picrate: an admirable contender for nonlinear applications

机译:苦味pic酸molecular的分子结构,振动,光物理和非线性光学性质的量子化学研究:非线性应用中令人称赞的竞争者

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摘要

In this work, very first attempt has been made to investigate the electronic, spectroscopic and nonlinear optical properties of l -threoninium picrate (LTHP) molecule by exploiting vital computational methods such as HF, B3LYP and range-separated functionals (CAM-B3LYP and LC-BLYP) with 6-31G* basis set. The calculated values of IR and Raman vibrational frequencies were found to be in a good agreement with experimental results. Time-dependent density functional theory has been applied to calculate the electronic and photophysical properties such as excitation energy, dipole moment and frontier molecular orbital (FMO) energies of LTHP. The excitation energy value calculated by CAM-B3LYP is at ~ 351 nm that in close harmony with experimental value (i.e., 356 nm). Total/partial DOS was determined using GGA/BLYP. The values of μ ~(tot), α ~(tot), Δ α , β ~(0)and β ~(tot)were estimated and discussed. The μ~(tot)and β~(tot)are found to be 3 and 51 times higher than urea molecule, respectively. The FMOs, molecular electrostatic potential and global reactivity descriptors were also calculated and discussed. All these results suggest that the LTHP would be a good candidate for optoelectronic applications.
机译:在这项工作中,已经进行了首次尝试,是通过利用重要的计算方法(例如HF,B3LYP和距离分离的功能)(CAM-B3LYP和LC)来研究l- l酸rate(LTHP)分子的电子,光谱和非线性光学性质。 -BLYP),基准范围为6-31G *。红外和拉曼振动频率的计算值与实验结果非常吻合。时变密度泛函理论已被用于计算LTHP的电子和光物理性质,例如激发能,偶极矩和前沿分子轨道(FMO)能量。 CAM-B3LYP计算出的激发能值为〜351 nm,与实验值(即356 nm)十分接近。使用GGA / BLYP确定总/部分DOS。估算并讨论了μ〜(tot),α〜(tot),Δα,β〜(0)和β〜(tot)的值。发现μ〜(tot)和β〜(tot)分别比尿素分子高3和51倍。还计算并讨论了FMO,分子静电势和整体反应性描述符。所有这些结果表明,LTHP将是光电应用的良好候选者。

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