Dayyoub Tarek, Maksimkin Aleksey V, Filippova Olga V, Tcherdyntsev Victor V, Telyshev Dmitry V
Institute for Bionic Technologies and Engineering, I.M. Sechenov First Moscow State Medical University (Sechenov University), Bolshaya Pirogovskaya Street 2-4, 119991 Moscow, Russia.
Department of Physical Chemistry, National University of Science and Technology "MISIS", 119049 Moscow, Russia.
Polymers (Basel). 2022 Aug 26;14(17):3511. doi: 10.3390/polym14173511.
Polymer smart materials are a broad class of polymeric materials that can change their shapes, mechanical responses, light transmissions, controlled releases, and other functional properties under external stimuli. A good understanding of the aspects controlling various types of shape memory phenomena in shape memory polymers (SMPs), such as polymer structure, stimulus effect and many others, is not only important for the preparation of new SMPs with improved performance, but is also useful for the optimization of the current ones to expand their application field. In the present era, simple understanding of the activation mechanisms, the polymer structure, the effect of the modification of the polymer structure on the activation process using fillers or solvents to develop new reliable SMPs with improved properties, long lifetime, fast response, and the ability to apply them under hard conditions in any environment, is considered to be an important topic. Moreover, good understanding of the activation mechanism of the two-way shape memory effect in SMPs for semi-crystalline polymers and liquid crystalline elastomers is the main key required for future investigations. In this article, the principles of the three basic types of external stimuli (heat, chemicals, light) and their key parameters that affect the efficiency of the SMPs are reviewed in addition to several prospective applications.
聚合物智能材料是一类广泛的高分子材料,它们能够在外部刺激下改变其形状、力学响应、光传输、控释及其他功能特性。深入了解控制形状记忆聚合物(SMP)中各种形状记忆现象的因素,如聚合物结构、刺激效应等,不仅对于制备性能更优的新型SMP很重要,而且对于优化现有SMP以拓展其应用领域也很有用。在当今时代,简单了解激活机制、聚合物结构、使用填料或溶剂对聚合物结构进行改性对激活过程的影响,从而开发出具有改进性能、长寿命、快速响应且能在任何环境的苛刻条件下应用的新型可靠SMP,被认为是一个重要课题。此外,深入了解半结晶聚合物和液晶弹性体的SMP中双向形状记忆效应的激活机制是未来研究的主要关键。本文除了介绍几种潜在应用外,还综述了三种基本外部刺激(热、化学物质、光)的原理及其影响SMP效率的关键参数。