首页> 外文期刊>Acta crystallographica. Section C, Structural chemistry. >Crystal structure of 5,6-bis(9H-carbazol-9-yl)-benzo[c][1,2,5]thiadiazole: distortion from a hypothetical higher-symmetry structure
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Crystal structure of 5,6-bis(9H-carbazol-9-yl)-benzo[c][1,2,5]thiadiazole: distortion from a hypothetical higher-symmetry structure

机译:5,6-双(9H-咔唑-9-基)的晶体结构-benzo [c] [1,2,5]噻唑:来自假设的高度对称结构的扭曲

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Nucleophilic substitution of F atoms in 5,6-difluorobenzo[c][1,2,5]thiadiazole (DFBT) for carbazole could be potentially interesting as a novel way of synthesizing building blocks for new conjugated materials for applications in organic chemistry. The crystal structures of 5,6-bis(9H-carbazol-9-yl)benzo[c]-[1,2,5]thiadiazole (DCBT), C_30H_18N_4S, and its hydrate, C_30H_18N_4S·0.125H_2O, were investigated using single-crystal X-ray analysis. The hydrate contains two symmetry-independent DCBT molecules. The dihedral angles between the plane of the central benzothiadiazole fragment and that of the carbazole units vary between 50.8 and 69.9°, indicating conformational flexibility of the DCBT molecule in the crystals, which is consistent with quantum chemical calculations. The analysis of the crystal packing of DCBT revealed that the experimental triclinic structure could be described as a distortion from a hypothetical higher-symmetry monoclinic structure. The quantum chemical calculations of two possible monoclinic structures, which are related to the experimental structure by a shifting of molecular layers, showed that the proposed structures are higher in energy by 5.4 and 10.1 kcal mol~ -1. This energy increase is caused by less dense crystal packings of the symmetric structures, which results in a decrease of the number of intermolecular interactions.
机译:F原子在5,6-二氟苯的亲核取代F原子脱唑(DFBT)用于咔唑的潜在兴趣,作为合成新的共轭材料的建筑物块,用于在有机化学中的应用。使用单一研究5,6-双(9H-咔唑-9-基)苯并[C] - [1,2,5]噻二唑(DCBT),C_30H_18N_4S·0.125H_2O的水合物C_30H_18N_4S·0.125H_2O - 克里斯特X射线分析。水合物含有两个对称无关的DCBT分子。中枢性苯并噻唑片段的平面与咔唑单元之间的二面角在50.8和69.9°之间变化,表明晶体中的DCBT分子的构成柔韧性,这与量子化学计算一致。 DCBT的晶体包装的分析显示,实验三型结构可以被描述为从假设的更高对称单斜斜肌结构的变形。两种可能的单斜石结构的量子化学计算与分子层的换档与实验结构有关,表明所提出的结构较高5.4和10.1kcal mol〜-1。这种能量增加是由对称结构的较小晶体封装引起的,这导致分子间相互作用的数量降低。

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