Lakhera Shradha, Rana Meenakshi, Devlal Kamal
Department of Physics, School of Sciences, Uttarakhand Open University, Haldwani, Uttarakhand, 263139, India.
J Mol Model. 2024 Jan 12;30(2):37. doi: 10.1007/s00894-023-05816-w.
The present study accounts for the quantum chemical and nonlinear optical properties of the combination of para-aminobenzoic acid and 7-diethylamino 4-methyl coumarin. Three different complexes were designed, surface interaction (adsorption) and two by connecting both molecules with π-bridge benzene and biphenyl. The amino and carboxyl groups were observed to behave as strong donor and acceptor sites in all the complexes. The band gap of the adsorbed complex was found more suitable. The absorption wavelength and intensity both were seen to increase with the increase in the number of benzene rings in the π-bridge. The values of first- and second-order hyperpolarizability suggest the improved nonlinear optical responses of the introduced complexes. Additionally, the negative value of second-order hyperpolarizability suggests the possibility of the occurrence of reverse saturable absorption in these combinations. The reported work gives theoretical insights into the nonlinear optical properties of the combination of para-aminobenzoic acid and 7-diethylamino 4-methyl coumarin.
The molecular modeling and the quantum chemical studies were performed with Gaussian software packages. The standard B3LYP-6-311++G(d,p) basis functionals were used for energy minimization and other spectral calculations. All the surface analyses reported here are obtained by employing Multiwfn software. The chemical reactivity was established by the global reactivity descriptors. The intramolecular interactions and charge localization were stated using inter-fragment charge transfer analysis.
本研究阐述了对氨基苯甲酸与7-二乙氨基-4-甲基香豆素组合的量子化学和非线性光学性质。设计了三种不同的配合物,一种是表面相互作用(吸附),另外两种是通过π桥联苯和联苯连接两个分子。在所有配合物中,氨基和羧基表现为强供体和受体位点。发现吸附配合物的带隙更合适。随着π桥中苯环数量的增加,吸收波长和强度均增加。一阶和二阶超极化率的值表明引入的配合物的非线性光学响应得到改善。此外,二阶超极化率的负值表明这些组合中可能发生反饱和吸收。所报道的工作为对氨基苯甲酸与7-二乙氨基-4-甲基香豆素组合的非线性光学性质提供了理论见解。
使用高斯软件包进行分子建模和量子化学研究。标准的B3LYP-6-311++G(d,p)基函数用于能量最小化和其他光谱计算。此处报道的所有表面分析均通过使用Multiwfn软件获得。通过全局反应性描述符确定化学反应性。使用片段间电荷转移分析说明分子内相互作用和电荷定位。