Ashfaq Muhammad, Khalid Muhammad, Tahir Muhammad Nawaz, Ali Akbar, Arshad Muhammad Nadeem, Asiri Abdullah M
Department of Physics, University of Sargodha, Sargodha 40100, Pakistan.
Department of Chemistry, Khwaja Fareed University of Engineering & Information Technology, Rahim Yar Khan 64200, Pakistan.
ACS Omega. 2022 Mar 14;7(11):9867-9878. doi: 10.1021/acsomega.2c00288. eCollection 2022 Mar 22.
This investigation is focused on the synthesis of two halo-functionalized crystalline Schiff base (imine) compounds: ()-2-methoxy-6-(((3-(trifluoromethyl)phenyl)imino)methyl)phenol () and ()-1-(((2-fluorophenyl)imino)methyl)naphthalen-2-ol () by the condensation reaction of substituted benzaldehydes and substituted aniline. The crystal structures of and were determined unambiguously by single-crystal X-ray diffraction (SC-XRD) studies. Intermolecular interactions and the role of fluorine atoms in the stabilization of the crystal packing are explored for both compounds using Hirshfeld surface analysis. Accompanied with experimental studies, quantum chemical calculations were also performed for comprehensive structure elucidation at the M06/6-311G(d,p) level of theory. A comparison of experimental and density functional theory results for geometrical parameters exhibited excellent agreement. Interestingly, Frontier molecular orbitals and natural bond orbital (NBO) findings revealed that intramolecular charge transfer and hyper-conjugation interactions had played a significant role to stabilize the molecules. Both compounds exhibited a relatively larger value of hardness with a smaller global softness, which, as proposed by the SC-XRD and NBO study, shows a higher stability. Nonlinear optical (NLO) findings showed that manifested a larger value of linear polarizability (<> = 293.06 a.u.) and second-order hyperpolarizability (<γ> = 3.31 × 10 a.u.) than (<> = 252.42 and <γ> = 2.08 × 10 a.u.) due to an extended conjugation. The above-mentioned findings of the entitled compounds may play a crucial role in NLO applications.
本研究聚焦于通过取代苯甲醛与取代苯胺的缩合反应合成两种卤代官能化的结晶席夫碱(亚胺)化合物:()-2-甲氧基-6-(((3-(三氟甲基)苯基)亚氨基)甲基)苯酚()和()-1-(((2-氟苯基)亚氨基)甲基)萘-2-醇()。通过单晶X射线衍射(SC-XRD)研究明确确定了和的晶体结构。使用 Hirshfeld 表面分析探索了两种化合物的分子间相互作用以及氟原子在晶体堆积稳定中的作用。伴随实验研究,还在 M06/6-311G(d,p)理论水平上进行了量子化学计算以进行全面的结构解析。几何参数的实验结果与密度泛函理论结果的比较显示出极佳的一致性。有趣的是,前线分子轨道和自然键轨道(NBO)研究结果表明,分子内电荷转移和超共轭相互作用在稳定分子方面发挥了重要作用。两种化合物均表现出相对较大的硬度值和较小的整体柔软度,如SC-XRD和NBO研究所表明的,这显示出更高的稳定性。非线性光学(NLO)研究结果表明,由于共轭扩展,表现出比(= 252.42和<γ> = 2.08×10 a.u.)更大的线性极化率(<> = 293.06 a.u.)和二阶超极化率(<γ> = 3.31×10 a.u.)。上述标题化合物的研究结果可能在 NLO 应用中发挥关键作用。