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探索与调控功能性聚合物体系中的非共价相互作用

Probing and Manipulating Noncovalent Interactions in Functional Polymeric Systems.

作者信息

Chen Jingsi, Peng Qiongyao, Peng Xuwen, Zhang Hao, Zeng Hongbo

机构信息

Department of Chemical and Materials Engineering, University of Alberta, Edmonton, Alberta T6G 1H9, Canada.

出版信息

Chem Rev. 2022 Sep 28;122(18):14594-14678. doi: 10.1021/acs.chemrev.2c00215. Epub 2022 Sep 2.

Abstract

Noncovalent interactions, which usually feature tunable strength, reversibility, and environmental adaptability, have been recognized as driving forces in a variety of biological and chemical processes, contributing to the recognition between molecules, the formation of molecule clusters, and the establishment of complex structures of macromolecules. The marriage of noncovalent interactions and conventional covalent polymers offers the systems novel mechanical, physicochemical, and biological properties, which are highly dependent on the binding mechanisms of the noncovalent interactions that can be illuminated via quantification. This review systematically discusses the nanomechanical characterization of typical noncovalent interactions in polymeric systems, mainly through direct force measurements at microscopic, nanoscopic, and molecular levels, which provide quantitative information (e.g., ranges, strengths, and dynamics) on the binding behaviors. The fundamental understandings of intermolecular and interfacial interactions are then correlated to the macroscopic performances of a series of noncovalently bonded polymers, whose functions (e.g., stimuli-responsiveness, self-healing capacity, universal adhesiveness) can be customized through the manipulation of the noncovalent interactions, providing insights into the rational design of advanced materials with applications in biomedical, energy, environmental, and other engineering fields.

摘要

非共价相互作用通常具有强度可调、可逆性和环境适应性等特点,已被公认为是多种生物和化学过程中的驱动力,有助于分子间的识别、分子簇的形成以及大分子复杂结构的建立。非共价相互作用与传统共价聚合物的结合赋予了体系新颖的机械、物理化学和生物学特性,这些特性高度依赖于非共价相互作用的结合机制,而这种机制可通过量化得以阐明。本综述系统地讨论了聚合物体系中典型非共价相互作用的纳米力学表征,主要通过在微观、纳米和分子水平上的直接力测量来实现,这些测量提供了关于结合行为的定量信息(如范围、强度和动力学)。分子间和界面相互作用的基本认识随后与一系列非共价键合聚合物的宏观性能相关联,这些聚合物的功能(如刺激响应性、自愈能力、通用粘附性)可通过非共价相互作用的调控进行定制,从而为在生物医学、能源、环境和其他工程领域应用的先进材料的合理设计提供见解。

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