Sah Manoj, Chaudhary Raju, Sahani Suresh Kumar, Sahani Kameshwar, Pandey Binay Kumar, Pandey Digvijay, Lelisho Mesfin Esayas
Department of Physics, St. Xavier's College, Maitighar, Kathmandu, Nepal.
Department of Science and Technology, Rajarshi Janak University, Janakpurdham, Nepal.
Sci Rep. 2025 Mar 26;15(1):10372. doi: 10.1038/s41598-025-91211-9.
This work used the 6-311++G(d, p) basis set in the DFT/B3LYP and DFT/CAM-B3LYP technique to build the molecular structures of the nicotine and caffeine molecules. The minimum energy gives stability to these molecules with their corresponding dipole moment. The optimized structure to compute Raman spectroscopy and UV-Vis in CCl4 and DMSO solvent, employing the basis set 6-311++G(d, p), the DFT/B3LYP and CAM-B3LYP hybrid function, with the C-PCM model. The re-optimized molecule is used to study NLOs property which also give the dipole moment, polarizability and hyperpolarizability of titled molecules. We used AIM to investigate these molecules' intramolecular interactions, bond critical points, and interbasin paths. Multiwfn software 3.8 produces the NCI-RGD diagram, which we use to determine weak interaction, electron density, Van der Waals interaction, steric effect, and hydrogen bond. Similarly, we analyze the covalent bond with the molecular surface using ELF and LOL techniques.
这项工作在DFT/B3LYP和DFT/CAM - B3LYP技术中使用6 - 311++G(d, p)基组来构建尼古丁和咖啡因分子的分子结构。最低能量赋予这些分子及其相应偶极矩稳定性。采用6 - 311++G(d, p)基组、DFT/B3LYP和CAM - B3LYP杂化函数以及C - PCM模型,对在CCl4和DMSO溶剂中的分子结构进行优化以计算拉曼光谱和紫外 - 可见光谱。重新优化后的分子用于研究非线性光学性质,该性质也给出了标题分子的偶极矩、极化率和超极化率。我们使用AIM来研究这些分子的分子内相互作用、键临界点和盆地间路径。Multiwfn软件3.8生成NCI - RGD图,我们用它来确定弱相互作用、电子密度、范德华相互作用、空间效应和氢键。同样,我们使用ELF和LOL技术分析分子表面的共价键。