Srivastava Anurag, Khan Mohd Shahid
Department of Physics, Jamia Millia Islamia, New Delhi, 110025, India.
Advanced Material Research Group, CNT Lab, ABV-Indian Institute of Information Technology and Management, Gwalior, 474015, India.
J Mol Model. 2021 Nov 3;27(11):340. doi: 10.1007/s00894-021-04967-y.
The simulation of molecular descriptors of thiophene-based metal complexes has been performed using Gaussian 03 and Atomistic toolkit Virtual Nanolab (ATK-VNL) software. It is found that with respect to the obtained molecular descriptors, the molecules show distinct properties. The dimensions of the data set being large, the principal components (PC1 and PC2) have been obtained using principal component analysis (PCA). Analysis has been done for the Linear regression of principal components with first hyperpolarizability and second hyperpolarizability of the molecules. The results indicate that, of all the calculated molecular descriptors of thiophene-based metal complexes, the molecular energy (E), ionization energy (E), and molecular dipole moment (D) plays a dominant role in determining their nonlinear optical properties i.e., the hyperpolarizability value, of the studied molecules. Also, the molecular descriptors, polarizability (P) and molar refractivity (MR), show considerable impact on the nonlinear optical properties of the studied molecules.
已使用高斯03和原子工具包虚拟纳米实验室(ATK-VNL)软件对噻吩基金属配合物的分子描述符进行了模拟。研究发现,就所获得的分子描述符而言,这些分子表现出不同的性质。由于数据集规模较大,已使用主成分分析(PCA)获得了主成分(PC1和PC2)。已对主成分与分子的第一超极化率和第二超极化率进行线性回归分析。结果表明,在所有计算出的噻吩基金属配合物的分子描述符中,分子能量(E)、电离能(E)和分子偶极矩(D)在确定所研究分子的非线性光学性质即超极化率值方面起主导作用。此外,分子描述符极化率(P)和摩尔折射率(MR)对所研究分子的非线性光学性质也有相当大的影响。