Miao Wangen, Yang Dong, Liu Minghua
School of Chemistry and Chemical Engineering, Institute of Physical Chemistry, Lingnan Normal University, Development Centre for New Materials Engineering & Technology in Universities of Guangdong, Zhanjiang, 524048 (P. R. China).
Chemistry. 2015 May 11;21(20):7562-70. doi: 10.1002/chem.201500097. Epub 2015 Apr 1.
A new class of homologous gelators, LG12 -(CH2 )n -BSA, composed of bipyridinyl groups, L-glutamic moieties having double dodecyl chains, and linked alkyl spacers with different lengths were synthesized. It was found that these gelators could immobilize medium-polarity solvents readily and the behaviors of these gels showed a dependence on the spacer length. Of all the gels, the LG12 -(CH2 )11 -BSA gels exhibited self-healing property and multiple-stimulus responsibility, such as heating, shaking, and sonication. The investigation of CD spectra indicated that the supramolecular chirality, which was attributed to the chiral transfer from the chiral center to the assemblies, was also closely related to the length of methylene spacers. The longer the alkyl spacers, the weaker the transmitted supramolecular chirality. Only LG12 -(CH2 )1 -BSA gelators, which had the shortest spacers, formed right-handed nanoscale chiral twists owing to crowded hydrogen bonding interactions. Moreover, the high-polarity solvent DMF was found to be able to regulate the chiral twist as well as its pitch length readily.
合成了一类新型的同源凝胶因子LG12 -(CH2 )n -BSA,其由联吡啶基、具有双十二烷基链的L-谷氨酸部分以及不同长度的连接烷基间隔基组成。发现这些凝胶因子能够轻松固定中等极性溶剂,并且这些凝胶的行为表现出对间隔基长度的依赖性。在所有凝胶中,LG12 -(CH2 )11 -BSA凝胶表现出自愈性能和多种刺激响应性,如加热、摇晃和超声处理。圆二色光谱研究表明,超分子手性归因于从手性中心到手性组装体的手性转移,其也与亚甲基间隔基的长度密切相关。烷基间隔基越长,传递的超分子手性越弱。只有具有最短间隔基的LG12 -(CH2 )1 -BSA凝胶因子由于密集的氢键相互作用形成了右手纳米级手性扭曲。此外,发现高极性溶剂N,N-二甲基甲酰胺能够轻松调节手性扭曲及其螺距长度。