CAS Key Laboratory of Soft Matter Chemistry, Department of Polymer Science and Engineering, University of Science and Technology of China, Hefei, Anhui 230026, China.
Department of Chemistry, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599, United States.
ACS Appl Mater Interfaces. 2021 Jan 20;13(2):3278-3286. doi: 10.1021/acsami.0c21494. Epub 2021 Jan 8.
Skin is a vital biological defense system that protects the body from physical harm with its unique mechanical properties attributed to the hierarchical organization of the protein scaffold. Developing a synthetic skinlike material has aroused great interest; however, replication of the skin's mechanical response, including anisotropic softness and strain-stiffening, is difficult to achieve. Here, to mimic the mechanical behaviors of skin, a reprocessable bottlebrush copolymer elastomer was designed with renewable and rigid cellulose as backbones; meanwhile, poly(-butyl acrylate)--poly(methyl methacrylate) (PBA--PMMA) diblocks were designed as the grafted side chains. The so-made elastomers were subjected to a step-cyclic tensile deformation, by which the internal structures became oriented nanofibers and endowed stress-strain behaviors pretty much similar to those of the real skin. Overall, our research work currently undertaken would be of great importance in the development of a series of biomimetic skinlike polymer materials.
皮肤是一种至关重要的生物防御系统,其独特的机械性能源于蛋白质支架的层次结构,为身体提供物理保护。开发一种类似皮肤的合成材料引起了极大的兴趣;然而,要复制皮肤的机械响应,包括各向异性柔软度和应变硬化,是很难实现的。在这里,为了模拟皮肤的机械行为,设计了一种可再加工的瓶刷共聚物弹性体,其骨架由可再生和刚性纤维素组成;同时,设计了聚(-丁基丙烯酸酯)-聚(甲基丙烯酸甲酯)(PBA-PMMA)嵌段作为接枝侧链。所制备的弹性体经受了分步循环拉伸变形,内部结构变成了取向的纳米纤维,赋予了与真实皮肤非常相似的应力-应变行为。总的来说,我们目前正在进行的研究工作对于一系列仿生皮肤状聚合物材料的发展具有重要意义。