Yagci Nermin Kahveci, Faizi Md Serajul Haque, Aydin Alev Sema, Dege Necmi, Dogan Onur Erman, Agar Erbil, Mashrai Ashraf
Kirikkale University, Faculty of Arts and Sciences, Physics Department, 71450 Kirikkale, Turkey.
Department of Chemistry, Langat Singh College, B.R.A. Bihar University, Muzaffarpur, Bihar-842001, India.
Acta Crystallogr E Crystallogr Commun. 2020 Jun 16;76(Pt 7):1075-1079. doi: 10.1107/S2056989020007847. eCollection 2020 Jul 1.
In the title compound, CHNO, the configuration of the C=N bond of the Schiff base is , and an intra-molecular O-H⋯N hydrogen bond is observed, forming an intra-molecular (6) ring motif. The phenol ring is inclined by 45.73 (2)° from the plane of the aniline ring. In the crystal, mol-ecules are linked along the axis by O-H⋯N and C-H⋯O hydrogen bonds, forming polymeric chains. The Hirshfeld surface analysis of the crystal structure indicates that the most important contributions for the packing arrangement are from H⋯H (56.9%) and H⋯C/C⋯H (31.2%) inter-actions. The density functional theory (DFT) optimized structure at the B3LYP/ 6-311 G(d,p) level is compared with the experimentally determined mol-ecular structure, and the HOMO-LUMO energy gap is provided. The crystal studied was refined as an inversion twin.
在标题化合物CHNO中,席夫碱的C=N键构型为 ,并观察到分子内O-H⋯N氢键,形成分子内(6)环 motif。酚环相对于苯胺环平面倾斜45.73 (2)°。在晶体中,分子沿 轴通过O-H⋯N和C-H⋯O氢键相连,形成聚合物链。晶体结构的 Hirshfeld 表面分析表明,堆积排列的最重要贡献来自H⋯H (56.9%) 和H⋯C/C⋯H (31.2%) 相互作用。将在B3LYP/6-311 G(d,p) 水平上优化的密度泛函理论 (DFT) 结构与实验测定的分子结构进行比较,并提供了HOMO-LUMO能隙。所研究的晶体被精修为一个倒易孪晶。