Lakshminarayanan P S, Suresh Eringathodi, Ghosh Pradyut
Analytical Science Discipline, Central Salt and Marine Chemicals Research Institute, G. B. Marg, Bhavnagar 364002, India.
Inorg Chem. 2006 May 29;45(11):4372-80. doi: 10.1021/ic052159o.
Synthesis and crystal structure of a tren-based amide, L(1), N,N',N''-tris[(2-amino-ethyl)-3-nitro-benzamide] is reported. The crystallographic results show intramolecular hydrogen bonding and aromatic pi...pi stacking among tripodal arms which prevent opening of the receptor cavity. Intermolecular hydrogen bonding in L1 generates the sheetlike network in the solid state. The structural aspects of binding halides (1 and 2), nitrate (3), perchlorate (4), and hexafluorosilicate (5) with the protonated L1 are examined crystallographically. Protonation at the apical nitrogen of L1 in the presence of anions shows a structural transformation from sheet to bilayer network. Anion binding with multiple receptor units is observed via amide N-H...anion and aryl C-H...anion hydrogen-bonding interactions in all the complexes. The aryl group having nitro functionality that contributes to anion binding in complexes 1-5 through CH...anion interactions (either para or meta to nitro C-H) is noteworthy. These studies also show higher anion coordination of chloride (8) and hexafluorosilicate (14) with L1H+.
报道了一种基于三亚乙基四胺的酰胺L(1),即N,N',N''-三[(2-氨基乙基)-3-硝基苯甲酰胺]的合成及晶体结构。晶体学结果表明,三脚架臂之间存在分子内氢键和芳香π…π堆积,这阻止了受体腔的打开。L1中的分子间氢键在固态下形成了片状网络。通过晶体学研究了质子化的L1与卤化物(1和2)、硝酸盐(3)、高氯酸盐(4)和六氟硅酸盐(5)的结合结构方面。在阴离子存在下,L1顶端氮原子的质子化显示出从片状网络到双层网络的结构转变。在所有配合物中,通过酰胺N-H…阴离子和芳基C-H…阴离子氢键相互作用观察到阴离子与多个受体单元的结合。值得注意的是,具有硝基官能团的芳基通过CH…阴离子相互作用(硝基C-H的对位或间位)在配合物1-5中对阴离子结合有贡献。这些研究还表明,氯离子(8)和六氟硅酸盐(14)与L1H+具有更高的阴离子配位。