Departamento de Química Orgánica, Facultad de Ciencias Químicas, Ciudad Universitaria s/n., 28040 Madrid, Spain.
Chemistry. 2013 Feb 25;19(9):3239-48. doi: 10.1002/chem.201202584. Epub 2013 Jan 23.
A systematic study of the influence of solvent and the size of C(3)-symmetric discotics on their supramolecular polymerization mechanism is presented. The cooperativity of the self-assembly of the reported compounds is directly related to their gelation ability. The two series of C(3)-symmetric discotics investigated herein are based on benzene-1,3,5-tricarboxamides (BTAs) and oligo(phenylene ethynylene)-based tricarboxamides (OPETAs) that are peripherally decorated with achiral (1a and 2a) or chiral N-(2-aminoethyl)-3,4,5-trialkoxybenzamide units (1b and 2b). The supramolecular polymerization of compounds 1a,b and 2a,b has been exhaustively investigated in a number of solvents and by using various techniques: variable-temperature circular dichroism (VT-CD) spectroscopy, concentration-dependent (1)H NMR spectroscopy, and isothermal titration calorimetry (ITC). The supramolecular polymerization mechanism of compounds 2 is highly cooperative in solvents such as methylcyclohexane and toluene and is isodesmic in CHCl(3). Unexpectedly, chiral compound 1b is practically CD-silent, in contrast with previously reported BTAs. ITC measurements in CHCl(3) demonstrated that the supramolecular polymerization of BTA 1a is isodesmic. These results confirm the strong influence of the π-surface of the central aromatic core of the studied discotic and the branched nature of the peripheral side chains on the supramolecular polymerization. The gelation ability of these organogelators is negated in CHCl(3), in which the supramolecular polymerization mechanism is isodesmic.
本文系统研究了溶剂和 C(3)对称盘状分子的大小对其超分子聚合机制的影响。所报道化合物的自组装协同性与其凝胶能力直接相关。本文研究的两个 C(3)对称盘状分子系列基于苯-1,3,5-三羧酸酰胺(BTAs)和基于寡聚(苯乙炔)的三羧酸酰胺(OPETAs),它们的外围用非手性(1a 和 2a)或手性 N-(2-氨基乙基)-3,4,5-三甲氧基苯甲酰胺单元(1b 和 2b)修饰。化合物 1a,b 和 2a,b 的超分子聚合已在多种溶剂中通过各种技术进行了详尽研究:变温圆二色(VT-CD)光谱、浓度依赖性(1)H NMR 光谱和等温滴定量热法(ITC)。化合物 2 的超分子聚合机制在甲基环己烷和甲苯等溶剂中具有高度协同性,在 CHCl(3)中则是等摩尔的。出乎意料的是,手性化合物 1b 与之前报道的 BTAs 相比,实际上是 CD 沉默的。在 CHCl(3)中的 ITC 测量表明,BTA 1a 的超分子聚合是等摩尔的。这些结果证实了所研究的盘状分子的中心芳香核的π-表面和外围支链的分支性质对超分子聚合的强烈影响。这些有机凝胶剂在 CHCl(3)中的凝胶能力被否定,因为在这种溶剂中超分子聚合机制是等摩尔的。