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立体化学对超分子自组装体手性和凝胶化性质的影响。

Effect of Stereochemistry on Chirality and Gelation Properties of Supramolecular Self-Assemblies.

作者信息

Qin Minggao, Zhang Yaqian, Xing Chao, Yang Li, Zhao Changli, Dou Xiaoqiu, Feng Chuanliang

机构信息

State Key Lab of Metal Matrix Composites, School of, Materials Science and Engineering, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai, 200240, P.R. China.

出版信息

Chemistry. 2021 Feb 10;27(9):3119-3129. doi: 10.1002/chem.202004533. Epub 2021 Jan 15.

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 -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.

摘要

尽管手性纳米结构已在各种结构层次上制备出来,但手性从分子到超分子自组装体的转移和放大仍然令人困惑,尤其是对于异手性分子。在此,设计并合成了四个系列基于C对称二肽的衍生物,它们具有不同的氨基酸序列和不同的手性。实现了分子手性向超分子组装体的转录和放大。结果表明,超分子手性仅由与苯核相邻的氨基酸决定,而与C端氨基酸的绝对构型无关。此外,分子手性对凝胶化行为也有显著影响。对于基于二苯基丙氨酸的凝胶剂,同手性凝胶剂可通过常规加热-冷却过程形成凝胶,而异手性凝胶剂在超声处理下形成半透明稳定凝胶。外消旋凝胶比纯对映体具有更高的机械性能。所有这些结果有助于增加对特定手性超分子结构生成控制的认识,并有助于开发新的优化策略,以通过异手性和外消旋体系实现功能性超分子有机凝胶。

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