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多刺激响应性超分子凝胶:设计原理、最新进展及展望

Multistimuli-responsive supramolecular gels: design rationale, recent advances, and perspectives.

作者信息

Sun Zhifang, Huang Qiyu, He Ting, Li Zhengyuan, Zhang Yi, Yi Lunzhao

机构信息

College of Chemistry and Chemical Engineering, Central South University, Changsha, 410083 (China).

出版信息

Chemphyschem. 2014 Aug 25;15(12):2421-30. doi: 10.1002/cphc.201402187. Epub 2014 Jun 20.

Abstract

This manuscript presents a brief overview of recent advances in multistimuli-responsive supramolecular gels (MRSGs). The synthesis of MRSGs with faster and smarter responsive abilities to a variety of external stimuli, such as redox reagents, pH changes, ligands, and coupling reagents, is one key issue for the upgrade of current molecular motors, signal sensors, shape memory devices, drug delivery systems, display devices, and other devices. However, the design rules of MRSGs are still not well understood. The lack of information about the relationship between the spatial structure and gelation behavior of existing gelators means that the knowledge required to design new gelators by the addition of functional moieties to well-known gelators is lacking. Insights into the gelation pathway of known gelators may bring inspiration to researchers who want to exploit elegant designs and specific building blocks to obtain their own MRSGs with predictable stimuli-responsive abilities.

摘要

本文简要概述了多刺激响应超分子凝胶(MRSGs)的最新进展。合成对多种外部刺激(如氧化还原试剂、pH变化、配体和偶联试剂)具有更快、更智能响应能力的MRSGs是当前分子马达、信号传感器、形状记忆装置、药物递送系统、显示装置及其他装置升级的关键问题之一。然而,MRSGs的设计规则仍未得到很好的理解。由于缺乏关于现有凝胶剂的空间结构与凝胶化行为之间关系的信息,这意味着在已知凝胶剂上添加功能基团来设计新凝胶剂所需的知识不足。深入了解已知凝胶剂的凝胶化途径可能会给那些想要利用精妙设计和特定结构单元来获得具有可预测刺激响应能力的自身MRSGs的研究人员带来启发。

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