Structural Study of N-(1,3-Benzothiazol-2-yl)-4-Halobenzenesulfonylhydrazides: Hirshfeld Surface Analysis and PIXEL Calculations

Crystals Pub Date : 2024-03-30 DOI:10.3390/cryst14040330
Ligia R. Gomes, John Nicolson Low, A. Pinheiro, J. Wardell
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Abstract

Hydrazonylsulfones such as Bt-NHNHSO2R and their iminotautomers have been studied as optical materials and for their biological potential. In this work, a structural study has been carried out on N-(1,3-benzothiazol-2-yl)-4-(halogenobenzenesulfonyl)-hydrazides (1: X = F, Cl, Br). For (1: X = F), single-crystal X-ray diffraction, Hirshfeld surface analysis, and PIXEL calculations were conducted, while in (1: X = Cl) and (1: X = Br), only single-crystal X-ray diffraction studies were successfully conducted due to the disordering of the solvent. Each compound crystallises with two independent but similar amino tautomers in the asymmetric units: compound (1: X = F) crystallises in the monoclinic P21/c, and the isostructural pair (X: 1 = Cl and Br) crystallises in the tetragonal P-421c space group. In the most stable motif of the supramolecular arrangement, the molecules of the asymmetric unit are connected by classical N–H(hydrazinyl)···N(thiazoyl) hydrogen bonds and several face-to-face, offset π···π interactions. This motif has a very powerful influence on the crystal structure due to its direct links with the other weaker motifs. Other significant intermolecular interactions found in the structure include N–H(hydrazonyl)···O(sulfonate) bonds. Analogous intermolecular interactions were found in similar compounds, leading to the conclusion that those interactions are the most important instabilizing the solid state of hydrazonylsulfones.
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N-(1,3-苯并噻唑-2-基)-4-卤苯磺酰肼的结构研究:Hirshfeld 表面分析和 PIXEL 计算
人们将肼基砜(如 Bt-NHNHSO2R 及其亚氨基同系物)作为光学材料和生物潜力进行了研究。在这项工作中,对 N-(1,3-苯并噻唑-2-基)-4-(卤代苯磺酰基)-肼(1:X = F、Cl、Br)进行了结构研究。对于(1:X = F),进行了单晶 X 射线衍射、Hirshfeld 表面分析和 PIXEL 计算,而对于(1:X = Cl)和(1:X = Br),由于溶剂的无序性,只成功地进行了单晶 X 射线衍射研究。每种化合物都在不对称单元中结晶出两个独立但相似的氨基同系物:化合物(1:X = F)在单斜 P21/c 空间群中结晶,而等结构对(X:1 = Cl 和 Br)在四方 P-421c 空间群中结晶。在最稳定的超分子排列模式中,不对称单元的分子通过经典的 N-H(肼基)--N(噻唑基)氢键和几个面对面的偏移 π---π 相互作用连接在一起。由于该基团与其他较弱的基团直接相连,因此对晶体结构产生了非常大的影响。结构中发现的其他重要分子间相互作用包括 N-H(肼基)--O(磺酸)键。在类似化合物中也发现了类似的分子间相互作用,从而得出结论:这些相互作用是造成肼基砜固态不稳定的最重要因素。
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