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作 者:罗欣 王磊[1] 王筱悠 伍韬 张贞贞 张一帆[1] LUO Xin;WANG Lei;WANG Xiaoyou;WU Tao;ZHANG Zhenzhen;ZHANG Yifan(Hubei Provincial Key Laboratory of Green Materials for Light Industry,Hubei University of Technology,Wuhan,Hubei 430068,China)
机构地区:[1]湖北工业大学绿色轻工材料湖北省重点实验室,湖北武汉430068
出 处:《纺织学报》2025年第3期225-235,共11页Journal of Textile Research
基 金:国家自然科学基金项目(32201021);湖北省教育厅科研项目(020329414)。
摘 要:丝素蛋白是构成蚕丝的主要成分之一,具有独特的多级结构和自组装特性,赋予蚕丝优异的力学性能。综述了目前提出的蚕丝纤维结构模型,总结了丝素蛋白的排列方式和自组装机制,探讨了丝素蛋白结构对其宏观性能的影响方式,为探索丝素蛋白材料功能化和性能提升的新途径提供参考。详述了由五级结构模型启发的多级结构分级调控机制,总结了各层级结构对蚕丝基材料力学性能的影响。基于结构调控的丝素蛋白基功能材料在生物医药、储能、环境科学等领域的应用实现了突破,针对丝素蛋白材料缺乏大规模生产和应用的问题,提出其在新兴学科领域的发展潜力和可能面临的挑战,为天然蛋白质材料的多元化和产业化应用提供新思路。Significance Silk fibroin is the main component of silk,with unique hierarchical structure and self-assembly properties,which endow silk with excellent mechanical properties.This paper reviews the currently proposed fiber structure models of silk,summarizes the arrangement and self-assembly mechanism of silk fibroin,and explores the ways in which the structure of silk fibroin affects their macroscopic properties,so as to lay a theoretical foundation for exploring new ways to functionalize and enhance the properties of silk fibroin materials.The hierarchical structure regulation mechanism inspired by the five-level structure model is detailed,and the influence of each hierarchical structure on the mechanical properties of silk-based materials is summarized.The structure-regulation-based silk fibroin-based functional materials have achieved breakthroughs in applications in biomedicine,energy storage,environmental science,etc.Aiming at the lack of large-scale production and application of silk fibroin materials,this study propose their development potential and possible challenges in emerging disciplines,and provide new ideas for the diversified and industrialized applications of natural protein materials.Progress In order to delve into the reasons behind the superior properties of silk fibroin and to achieve the diversified development of silk fibroin materials in various fields,exploring the structure of silk fibroin is indispensable.Many researchers have conducted in-depth analysis of the structure of natural silk and proposed a variety of structural models.The amyloid fibril-like model reveals a basic pathway for the formation of silk fibroin.The cylindrical fibril model,hierarchical network model,plate-segment structure model,micellar model,bulk network model,and nano-fishnet model have all explored the reasons for the excellent toughness and fracture resistance of silk fibers from different aspects.Among them,the nano-fishnet model is currently a more complete and theoretically and practically consistent struc
分 类 号:TS141.8[轻工技术与工程—纺织材料与纺织品设计]
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