Hebei Key Laboratory of Applied Chemistry, School of Environmental and Chemical Engineering, Yanshan University, Qinhuangdao 066004, China.
Nanoscale Res Lett. 2013 Oct 2;8(1):406. doi: 10.1186/1556-276X-8-406.
In this paper, new bolaform cholesteryl imide derivatives with different spacers were designed and synthesized. Their gelation behaviors in 23 solvents were investigated, and some of them were found to be low molecular mass organic gelators. The experimental results indicated that these as-formed organogels can be regulated by changing the flexible/rigid segments in spacers and organic solvents. Suitable combination of flexible/rigid segments in molecular spacers in the present cholesteryl gelators is favorable for the gelation of organic solvents. Scanning electron microscopy and atomic force microscopy observations revealed that the gelator molecules self-assemble into different aggregates, from wrinkle and belt to fiber with the change of spacers and solvents. Spectral studies indicated that there existed different H-bond formations between imide groups and assembly modes, depending on the substituent spacers in molecular skeletons. The present work may give some insight into the design and character of new organogelators and soft materials with special molecular structures.
本文设计并合成了具有不同间隔基的新型棒状胆甾醇酰亚胺衍生物。研究了它们在 23 种溶剂中的胶凝行为,其中一些被发现是低分子量有机凝胶剂。实验结果表明,通过改变间隔基和有机溶剂中的柔性/刚性片段可以调节这些形成的有机凝胶。本研究中的胆甾醇凝胶剂中分子间隔基中柔性/刚性片段的合适组合有利于有机溶剂的凝胶化。扫描电子显微镜和原子力显微镜观察表明,随着间隔基和溶剂的变化,凝胶剂分子自组装成不同的聚集体,从皱折和带结构到纤维结构。光谱研究表明,由于分子骨架中取代基间隔基的不同,酰胺基团之间存在不同的氢键形成和组装方式。本工作可能为具有特殊分子结构的新型有机凝胶剂和软物质的设计和特性提供一些启示。