Wang Yanyan, Jiang Xinyu, Li Xusheng, Ding Kexin, Liu Xianrui, Huang Bin, Ding Junjie, Qu Keyu, Sun Wenzhi, Xue Zhongxin, Xu Wenlong
School of Chemistry and Materials Science Ludong University, Yantai 264025, China.
Mater Horiz. 2023 Oct 2;10(10):4033-4058. doi: 10.1039/d3mh00326d.
Natural organisms, such as lobsters, lotus, and humans, exhibit exceptional mechanical properties due to their ordered structures. However, traditional hydrogels have limitations in their mechanical and physical properties due to their disordered molecular structures when compared with natural organisms. Therefore, inspired by nature and the properties of hydrogels similar to those of biological soft tissues, researchers are increasingly focusing on how to investigate bionic ordered structured hydrogels and render them as bioengineering soft materials with unique mechanical properties. In this paper, we systematically introduce the various structure types, design strategies, and optimization mechanisms used to enhance the strength, toughness, and anti-fatigue properties of bionic ordered structured hydrogels in recent years. We further review the potential applications of bionic ordered structured hydrogels in various fields, including sensors, bioremediation materials, actuators, and impact-resistant materials. Finally, we summarize the challenges and future development prospects of bionic ordered structured hydrogels in preparation and applications.
诸如龙虾、莲花和人类等天然生物体,由于其有序的结构而展现出卓越的力学性能。然而,与天然生物体相比,传统水凝胶因其无序的分子结构,在力学和物理性能方面存在局限性。因此,受自然以及与生物软组织相似的水凝胶特性的启发,研究人员越来越关注如何研究仿生有序结构水凝胶,并将其制成具有独特力学性能的生物工程软材料。在本文中,我们系统地介绍了近年来用于增强仿生有序结构水凝胶的强度、韧性和抗疲劳性能的各种结构类型、设计策略及优化机制。我们还进一步综述了仿生有序结构水凝胶在包括传感器、生物修复材料、致动器和抗冲击材料等各个领域的潜在应用。最后,我们总结了仿生有序结构水凝胶在制备和应用方面面临的挑战以及未来的发展前景。