Liu Mingxian, Fakhrullin Rawil, Stavitskaya Anna, Vinokurov Vladimir, Lama Nisha, Lvov Yuri
Department of Materials Science and Engineering, Jinan University, Guangzhou, P. R. China.
Institute of Fundamental Medicine and Biology, Kazan Federal University, Kazan, Russian Federation.
Sci Technol Adv Mater. 2024 Mar 25;25(1):2327276. doi: 10.1080/14686996.2024.2327276. eCollection 2024.
Micropatterning of biological surfaces performed via assembly of nano-blocks is an efficient design method for functional materials with complex organic-inorganic architecture. Halloysite clay nanotubes with high aspect ratios and empty lumens have attracted widespread interest for aligned biocompatible composite production. Here, we give our vision of advances in interfacial self-assembly techniques for these natural nanotubes. Highly ordered micropatterns of halloysite, such as coffee rings, regular strips, and concentric circles, can be obtained through high-temperature evaporation-induced self-assembly in a confined space and shear-force brush-induced orientation. Assembly of these clay nanotubes on biological surfaces, including the coating of human or animal hair, wool, and cotton, was generalized with the indication of common features. Halloysite-coated microfibers promise new approaches in cotton and hair dyeing, medical hemostasis, and flame-retardant tissue applications. An interfacial halloysite assembly on oil microdroplets (Pickering emulsion) and its core-shell structure (functionalization with quantum dots) was described in comparison with microfiber nanoclay coatings. In addition to being abundantly available in nature, halloysite is also biosafe, which makes its spontaneous surface micropatterning prospective for high-performance materials, and it is a promising technique with potential for an industrial scale-up.
通过纳米块组装实现生物表面的微图案化是一种用于构建具有复杂有机-无机结构的功能材料的有效设计方法。具有高纵横比和中空内腔的埃洛石粘土纳米管在制备取向生物相容性复合材料方面引起了广泛关注。在此,我们阐述了这些天然纳米管界面自组装技术的进展。通过在受限空间内高温蒸发诱导的自组装以及剪切力刷诱导的取向,可以获得高度有序的埃洛石微图案,如咖啡环、规则条纹和同心圆。这些粘土纳米管在包括人发或动物毛发、羊毛和棉花涂层在内的生物表面上的组装被归纳总结,并指出了其共同特征。涂覆有埃洛石的微纤维在棉花和毛发染色、医用止血以及阻燃组织应用方面展现了新的途径。与微纤维纳米粘土涂层相比,描述了埃洛石在油微滴上的界面组装(皮克林乳液)及其核壳结构(用量子点功能化)。除了在自然界中大量存在外,埃洛石还具有生物安全性,这使得其自发的表面微图案化在高性能材料方面具有前景,并且它是一种具有工业规模放大潜力的有前途的技术。