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Smart Responsive Polymers: Fundamentals and Design Principles
Annual Review of Condensed Matter Physics ( IF 22.6 ) Pub Date : 2020-03-16 , DOI: 10.1146/annurev-conmatphys-031119-050618
Debashish Mukherji 1, 2 , Carlos M. Marques 3 , Kurt Kremer 2
Affiliation  

In this review, we summarize recent theoretical and computational developments in the field of smart responsive materials, together with complementary experimental data. A material is referred to as smart responsive when a slight change in external stimulus can drastically alter its structure, function, or stability. Because of this smart responsiveness, these systems are used for the design of advanced functional materials. The most characteristic properties of smart polymers are discussed, especially polymer properties in solvent mixtures. We show how multiscale simulation approaches can shed light on the intriguing experimental observations. Special emphasis is given to two symmetric phenomena: co-non-solvency and co-solvency. The first phenomenon is associated with the collapse of polymers in two miscible good solvents, whereas the latter is associated with the swelling of polymers in poor solvent mixtures. Furthermore, we discuss when the standard Flory–Huggins-type mean-field polymer theory can (or cannot) be applied to understand these complex solution properties. We also sketch a few examples to highlight possible future directions, that is, how smart polymer properties can be used for the design principles of advanced functional materials.

中文翻译:


智能响应性聚合物:基本原理和设计原则

在这篇综述中,我们总结了智能响应材料领域的最新理论和计算进展,以及补充的实验数据。当外部刺激的轻微变化会大大改变其结构,功能或稳定性时,该材料被称为智能响应型。由于这种灵敏的响应能力,这些系统被用于高级功能材料的设计。讨论了智能聚合物的最典型特性,尤其是溶剂混合物中的聚合物特性。我们展示了多尺度模拟方法如何可以揭示有趣的实验观察结果。特别强调了两个对称现象:共同非破产和共同破产。第一种现象与聚合物在两种可混溶的良好溶剂中的崩解有关,而后者与不良溶剂混合物中聚合物的溶胀有关。此外,我们讨论了何时可以(或不能)应用标准的Flory-Huggins型平均场聚合物理论来理解这些复杂的溶液性质。我们还将绘制一些示例,以突出可能的未来方向,即如何将智能聚合物特性用于先进功能材料的设计原理。

更新日期:2020-04-21
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