Wei Jingjiang, Pan Fei, Ping Hang, Yang Kun, Wang Yanqing, Wang Qingyuan, Fu Zhengyi
Institute for Advanced Materials Deformation and Damage from Multi-Scale, Institute for Advanced Study, Chengdu University, Chengdu 610106, P. R. China.
Department of Chemistry, University of Basel, Basel 4058, Switzerland.
Research (Wash D C). 2023 Jun 9;6:0164. doi: 10.34133/research.0164. eCollection 2023.
Throughout billions of years, biological systems have evolved sophisticated, multiscale hierarchical structures to adapt to changing environments. Biomaterials are synthesized under mild conditions through a bottom-up self-assembly process, utilizing substances from the surrounding environment, and meanwhile are regulated by genes and proteins. Additive manufacturing, which mimics this natural process, provides a promising approach to developing new materials with advantageous properties similar to natural biological materials. This review presents an overview of natural biomaterials, emphasizing their chemical and structural compositions at various scales, from the nanoscale to the macroscale, and the key mechanisms underlying their properties. Additionally, this review describes the designs, preparations, and applications of bioinspired multifunctional materials produced through additive manufacturing at different scales, including nano, micro, micro-macro, and macro levels. The review highlights the potential of bioinspired additive manufacturing to develop new functional materials and insights into future directions and prospects in this field. By summarizing the characteristics of natural biomaterials and their synthetic counterparts, this review inspires the development of new materials that can be utilized in various applications.
在数十亿年的时间里,生物系统进化出了复杂的多尺度层次结构,以适应不断变化的环境。生物材料是在温和条件下通过自下而上的自组装过程合成的,利用周围环境中的物质,同时受基因和蛋白质的调控。模仿这种自然过程的增材制造为开发具有类似于天然生物材料的优良性能的新材料提供了一种很有前景的方法。本综述概述了天然生物材料,强调了它们在从纳米尺度到宏观尺度的各个尺度上的化学和结构组成,以及其性能背后的关键机制。此外,本综述还描述了通过不同尺度(包括纳米、微米、微-宏观和宏观水平)的增材制造生产的仿生多功能材料的设计、制备和应用。本综述突出了仿生增材制造在开发新型功能材料方面的潜力,以及对该领域未来方向和前景的见解。通过总结天然生物材料及其合成对应物的特点,本综述激发了可用于各种应用的新材料的开发。