Beijing National Laboratory for Molecular Sciences (BNLMS), Key Lab of Colloid and Interface Sciences, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190, China.
Chemistry. 2010 Mar 8;16(10):3176-83. doi: 10.1002/chem.200902139.
Organogels that are self-assembled from simple peptide molecules are an interesting class of nano- and mesoscale soft matter with simplicity and functionality. Investigating the precise roles of the organic solvents and their effects on stabilization of the formed organogel is an important topic for the development of low-molecular-weight gelators. We report the structural transition of an organogel self-assembled from a single dipeptide building block, diphenylalanine (L-Phe-L-Phe, FF), in toluene into a flower-like microcrystal merely by introducing ethanol as a co-solvent; this provides deeper insights into the phase transition between mesostable gels and thermodynamically stable microcrystals. Multiple characterization techniques were used to reveal the transitions. The results indicate that there are different molecular-packing modes formed in the gels and in the microcrystals. Further studies show that the co-solvent, ethanol, which has a higher polarity than toluene, might be involved in the formation of hydrogen bonds during molecular self-assembly of the dipeptide in mixed solvents, thus leading to the transition of organogels into microcrystals. The structural transformation modulated by the co-solvent might have a potential implication in controllable molecular self-assembly.
由简单的肽分子自组装而成的有机凝胶是一类有趣的纳米级和介观级软物质,具有简单性和功能性。研究有机溶剂的精确作用及其对形成的有机凝胶稳定化的影响,对于低分子量凝胶剂的发展是一个重要的课题。我们报告了由单个二肽构建块(L-苯丙氨酸-L-苯丙氨酸,FF)在甲苯中自组装的有机凝胶向花状微晶的结构转变,仅通过引入乙醇作为共溶剂;这为介稳态凝胶和热力学稳定微晶之间的相转变提供了更深入的了解。使用多种表征技术来揭示转变。结果表明,在凝胶和微晶中形成了不同的分子堆积模式。进一步的研究表明,共溶剂乙醇的极性比甲苯高,在混合溶剂中二肽的分子自组装过程中可能参与氢键的形成,从而导致有机凝胶向微晶的转变。共溶剂调节的结构转变可能对可控分子自组装具有潜在的意义。