Department of Mechanical Engineering and Materials Science, Edmund T. Pratt Jr. School of Engineering, Duke University, Durham, NC 27708, USA.
J Mater Chem B. 2019 Mar 14;7(10):1597-1624. doi: 10.1039/c8tb02579g. Epub 2018 Dec 13.
Smart polymers that are capable of controlled shape transformations under external stimuli have attracted significant attention in the recent years due to the resemblance of this behavior to the biological intelligence observed in nature. Moreover, shape-morphing polymer-based materials are great candidates for biomedical applications due to their adaptive properties, controlled shape transformations, and enriched functionality. In this review, we focus on the recent progress in the field of shape-memory and shape-changing polymers, highlighting their most promising applications in the biomedical field. We include a brief theoretical background on the underlying molecular mechanisms, classification of the polymer systems based on their mechanical properties, and the most promising state-of-the-art processing techniques for the fabrication of intelligent polymer-based materials. The aim of this review is to provide a link between the diverse stimuli-responsive polymer systems and their mechanical properties, and to highlight the most appealing up-to-date biomedical applications for shape-morphing systems.
智能聚合物在外部刺激下能够进行受控的形状转变,由于这种行为类似于自然界中观察到的生物智能,因此近年来引起了极大的关注。此外,基于形状变形的聚合物材料由于其适应性、受控的形状转变和丰富的功能,是生物医学应用的理想候选材料。在这篇综述中,我们重点介绍了形状记忆和形状变化聚合物领域的最新进展,强调了它们在生物医学领域最有前途的应用。我们包括了对基础分子机制的简要理论背景、基于机械性能的聚合物系统分类,以及用于制造智能聚合物基材料的最有前途的最新加工技术。本综述的目的是在不同的刺激响应聚合物系统与其机械性能之间建立联系,并强调形状变形系统最吸引人的最新生物医学应用。