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1-(4-溴苯基)-2,2-二氯乙酮和2,2-二溴-1-(对甲苯基)乙酮的合成、晶体结构、 Hirshfeld表面分析及晶体空隙

Syntheses, crystal structures, Hirshfeld surface analyses and crystal voids of 1-(4-bromo-phen-yl)-2,2-di-chloro-ethan-1-one and 2,2-di-bromo-1-(-tol-yl)ethan-1-one.

作者信息

Gurbanov Atash V, Guseinov Firudin I, Samigullina Aida I, Hökelek Tuncer, Hasanov Khudayar I, Javadzade Tahir A, Belay Alebel N

机构信息

Excellence Center, Baku State University, Z. Xalilov Str. 23, AZ 1148 Baku, Azerbaijan.

Centro de Quimica Estrutural, Instituto Superior Tecnico, Universidade de Lisboa, Av. Rovisco Pais, 1049-001 Lisbon, Portugal.

出版信息

Acta Crystallogr E Crystallogr Commun. 2025 Jan 14;81(Pt 2):120-126. doi: 10.1107/S205698902500012X. eCollection 2025 Feb 1.

Abstract

The asymmetric units of the compounds, CHBrClO (I), and CHBrO (II), contain two and one crystallographically independent mol-ecules, respectively. In compound (I), the planar rings are oriented at a dihedral angle of 13.23 (8)°. In crystals of both compounds, inter-molecular C-H⋯O hydrogen bonds link the mol-ecules into infinite chains along the -axis direction. In crystal of (I), there are π-π inter-actions between the centroids of the parallel rings with centroid-to-centroid distances of 3.5974 (14), 3.6178 (16) and 3.9387 (16) Å while neither π-π nor C-H⋯ π(ring) inter-actions are present in (II). The Hirshfeld surface analyses of the crystal structures indicate that the most important contributions for the crystal packings are from H⋯Cl/Cl⋯H (27.5%), H⋯O/O⋯H (15.0%), H⋯Br/Br⋯H (10.2%) and H⋯H (9.0%) for (I) and H⋯Br/Br⋯H (36.1%), H⋯H (22.2%), H⋯O/O⋯H (14.1%) and H⋯C/C⋯H (13.9%) for (II). Hydrogen bonding and van der Waals inter-actions are the dominant inter-actions in the crystal packings. The volumes of the crystal voids and the percentages of free spaces in the unit cells were calculated to 111.55 Å and 12.27% for (I) and 63.37 Å and 6.69% for (II), showing that no large cavities are present in either structure.

摘要

化合物CHBrClO(I)和CHBrO(II)的不对称单元分别包含两个和一个晶体学独立分子。在化合物(I)中,平面环以13.23 (8)°的二面角取向。在这两种化合物的晶体中,分子间的C-H⋯O氢键将分子沿c轴方向连接成无限链。在(I)的晶体中,平行环的质心之间存在π-π相互作用,质心到质心的距离为3.5974 (14)、3.6178 (16) 和3.9387 (16) Å,而在(II)中既不存在π-π相互作用也不存在C-H⋯π(环)相互作用。晶体结构的Hirshfeld表面分析表明,对于晶体堆积,(I)中最重要的贡献来自H⋯Cl/Cl⋯H(27.5%)、H⋯O/O⋯H(15.0%)、H⋯Br/Br⋯H(10.2%)和H⋯H(9.0%),(II)中来自H⋯Br/Br⋯H(36.1%)、H⋯H(22.2%)、H⋯O/O⋯H(14.1%)和H⋯C/C⋯H(13.9%)。氢键和范德华相互作用是晶体堆积中的主要相互作用。计算得出(I)的晶体空隙体积和晶胞中自由空间的百分比分别为111.55 Å和12.27%,(II)的分别为63.37 Å和6.69%,表明两种结构中均不存在大的空洞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7fe/11799792/eaeec8bfdae2/e-81-00120-fig1.jpg

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