Banna Md Hasan Al, Howlader Md Belayet Hossain, Miyatake Ryuta, Sheikh Md Chanmiya, Ansary Md Rezaul Haque, Zangrando Ennio
Department of Chemistry, Rajshahi University, Rajshahi-6205, Bangladesh.
Center for Environmental Conservation and Research Safety, University of Toyama, 3190 Gofuku, Toyama, 930-8555, Japan.
Acta Crystallogr E Crystallogr Commun. 2023 Feb 21;79(Pt 3):207-211. doi: 10.1107/S2056989023001354. eCollection 2023 Feb 1.
The mol-ecular and crystal structures of a benzoyl-hydrazine bearing an ether group, 4-[(4-methyl-benz-yl)-oxy]benzohydrazide, CHNO, (I), and of the corresponding '-[(thio-phen-2-yl)-methyl-idene]- derivative, 4-[(4-methyl-benz-yl)-oxy]-'-[(thio-phen-2-yl)-methyl-idene]benzohydrazide, CHNOS, (II), are described. The supra-molecular structures of both compounds are governed by N-H⋯N and N-H⋯O hydrogen-bonding inter-actions. The hydrazine compound (I) shows a crystal packing with a more complex hydrogen-bonding scheme because of the NH-NH entity, forming a di-periodic supra-molecular structure extending parallel to (100). Hydrazone mol-ecules in (II) are hydrogen-bonded through N-H⋯O inter-actions, giving rise to the formation of ribbons parallel to [010]. Mol-ecules of (I) and (II) show a different orientation of the carbohydrazide moiety likely to favor the crystal packing and thus hydrogen-bonding inter-actions.
描述了一种带有醚基的苯甲酰肼,即4-[(4-甲基苄基)氧基]苯甲酰肼,CHNO,(I),以及相应的'-[(噻吩-2-基)亚甲基]-衍生物,4-[(4-甲基苄基)氧基]-'-[(噻吩-2-基)亚甲基]苯甲酰肼,CHNOS,(II)的分子和晶体结构。两种化合物的超分子结构均由N-H⋯N和N-H⋯O氢键相互作用控制。由于NH-NH实体,肼化合物(I)显示出具有更复杂氢键模式的晶体堆积,形成了平行于(100)延伸的二维超分子结构。(II)中的腙分子通过N-H⋯O相互作用形成氢键,导致形成平行于[010]的带状结构。(I)和(II)的分子显示出不同的碳酰肼部分取向,这可能有利于晶体堆积,从而有利于氢键相互作用。