超分子化学
超分子手性
手性(物理)
分子
二肽
化学
对映体
氨基酸
超分子组装
立体化学
自组装
有机化学
手征对称破缺
生物化学
夸克
Nambu–Jona Lasinio模型
量子力学
物理
作者
Minggao Qin,Yaqian Zhang,Chao Xing,Li Yang,Changli Zhao,Xiaoqiu Dou,Chuanliang Feng
标识
DOI:10.1002/chem.202004533
摘要
Abstract Although chiral nanostructures have been fabricated at various structural levels, the transfer and amplification of chirality from molecules to supramolecular self‐assemblies are still puzzling, especially for heterochiral molecules. Herein, four series of C 2 ‐symmetrical dipeptide‐based derivatives bearing various amino acid sequences and different chiralities are designed and synthesized. The transcription and amplification of molecular chirality to supramolecular assemblies are achieved. The results show that supramolecular chirality is only determined by the amino acid adjacent to the benzene core, irrespective of the absolute configuration of the C‐terminal amino acid. In addition, molecular chirality also has a significant influence on the gelation behavior. For the diphenylalanine‐based gelators, the homochiral gelators can be gelled through a conventional heating–cooling process, whereas heterochiral gelators form translucent stable gels under sonication. The racemic gels possess higher mechanical properties than those of the pure enantiomers. All of these results contribute to an increasing knowledge over control of the generation of specific chiral supramolecular structures and the development of new optimized strategies to achieve functional supramolecular organogels through heterochiral and racemic systems.
科研通智能强力驱动
Strongly Powered by AbleSci AI