Faculty of Material Science and Chemical Engineering, Ningbo University, Ningbo, 315211, China.
Département de Chimie, Université de Montréal, C.P. 6128, Succ, Centre-ville, Montréal, QC, H3C 3J7, Canada.
Macromol Rapid Commun. 2023 Dec;44(23):e2300261. doi: 10.1002/marc.202300261. Epub 2023 Jul 28.
This review summarizes recent progress in the synergistic design strategy for thermoresponsive polymers possessing an upper critical solution temperature (UCST) in aqueous systems. To achieve precise control of the responsive behavior of the UCST polymers, their molecular design can benefit from a synergistic effect of hydrogen bonding with other interactions or modification of the chemical structures. The combination of UCST behavior with other stimuli-responsive properties of the polymers may yield new functional materials with potential applications such as sensors, actuators, and controlled release devices. The advances in this area provide insight or inspiration into the understanding and design of functional UCST polymers for a wide range of applications.
本文综述了近年来在具有上临界溶解温度(UCST)的水相体系中温敏聚合物的协同设计策略方面的进展。为了实现 UCST 聚合物响应行为的精确控制,其分子设计可以受益于氢键与其他相互作用或化学结构修饰的协同效应。将 UCST 行为与聚合物的其他刺激响应特性相结合,可能会产生具有潜在应用的新型功能材料,例如传感器、致动器和控制释放装置。该领域的进展为理解和设计具有广泛应用的功能 UCST 聚合物提供了思路或启示。