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(2)-4-苄基-2-(2,4-二氯亚苄基)-2,1,4-苯并噻嗪-3(4)-酮的晶体结构、 Hirshfeld表面分析、相互作用能及密度泛函理论研究

Crystal structure, Hirshfeld surface analysis and inter-action energy and DFT studies of (2)-4-benzyl-2-(2,4-di-chloro-benzyl-idene)-2-1,4-benzo-thia-zin-3(4)-one.

作者信息

Sebbar Nada Kheira, Hni Brahim, Hökelek Tuncer, Labd Taha Mohamed, Mague Joel T, El Ghayati Lhoussaine, Essassi El Mokhtar

机构信息

Laboratoire de Chimie Appliquée et Environnement, Equipe de Chimie Bioorganique Appliquée, Faculté des Sciences, Université Ibn Zohr, Agadir, Morocco.

Laboratoire de Chimie Organique Hétérocyclique URAC 21, Pôle de Compétence Pharmacochimie, Av. Ibn Battouta, BP 1014, Faculté des Sciences, Université Mohammed V, Rabat, Morocco.

出版信息

Acta Crystallogr E Crystallogr Commun. 2019 Oct 22;75(Pt 11):1650-1656. doi: 10.1107/S2056989019013586. eCollection 2019 Nov 1.

Abstract

The title compound, CHClNOS, contains 1,4-benzo-thia-zine and 2,4-di--chloro-benzyl-idene units, where the di-hydro-thia-zine ring adopts a screw-boat conformation. In the crystal, inter-molecular C-H⋯O (Bnz = benzene and Thz = thia-zine) hydrogen bonds form corrugated chains extending along the -axis direction which are connected into layers parallel to the plane by inter-molecular C-H⋯S (Methy = methyl-ene) hydrogen bonds, en-closing (22) ring motifs. Offset π-stacking inter-actions between 2,4-di--chloro-phenyl rings [centroid-centroid = 3.7701 (8) Å] and π-inter-actions which are associated by C-H⋯π(ring) and C-H⋯π(ring) (Dchlphy = 2,4-di-chloro-phen-yl) inter-actions may be effective in the stabilization of the crystal structure. The Hirshfeld surface analysis of the crystal structure indicates that the most important contributions for the crystal packing are from H⋯H (29.1%), H⋯C/C⋯H (27.5%), H⋯Cl/Cl⋯H (20.6%) and O⋯H/H⋯O (7.0%) inter-actions. Hydrogen-bonding and van der Waals inter-actions are the dominant inter-actions in the crystal packing. Computational chemistry indicates that in the crystal, the C-H⋯O and C-H⋯S hydrogen-bond energies are 55.0 and 27.1 kJ mol, respectively. Density functional theory (DFT) optimized structures at the B3LYP/6-311G(d,p) level are compared with the experimentally determined mol-ecular structure in the solid state. The HOMO-LUMO behaviour was elucidated to determine the energy gap.

摘要

标题化合物CHClNOS包含1,4 - 苯并噻嗪和2,4 - 二氯亚苄基单元,其中二氢噻嗪环呈螺旋船构象。在晶体中,分子间C—H⋯O(Bnz = 苯环,Thz = 噻嗪环)氢键形成沿a轴方向延伸的波纹链,这些链通过分子间C—H⋯S(Methy = 亚甲基)氢键连接成平行于bc平面的层,形成R 2 2(22)环 motif。2,4 - 二氯苯环之间的偏移π堆积相互作用[质心 - 质心距离 = 3.7701 (8) Å]以及通过C—H⋯π(环)和C—H⋯π(环)(Dchlphy = 2,4 - 二氯苯基)相互作用关联的π相互作用可能对晶体结构的稳定起有效作用。晶体结构的 Hirshfeld 表面分析表明,晶体堆积中最重要的贡献来自H⋯H(29.1%)、H⋯C/C⋯H(27.5%)、H⋯Cl/Cl⋯H(20.6%)和O⋯H/H⋯O(7.0%)相互作用。氢键和范德华相互作用是晶体堆积中的主要相互作用。计算化学表明,在晶体中,C—H⋯O和C—H⋯S氢键能分别为55.0和27.1 kJ mol。在B3LYP/6 - 311G(d,p)水平下的密度泛函理论(DFT)优化结构与固态下实验测定的分子结构进行了比较。阐明了HOMO - LUMO行为以确定能隙。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d609/6829709/982510a93577/e-75-01650-fig1.jpg

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