Ge Haipei, Liu Yu, Liu Fujuan
National Engineering Laboratory for Modern Silk, College of Textile and Clothing Engineering, Soochow University, 199 Ren-Ai Road, Suzhou 215123, China.
Materials (Basel). 2023 Nov 2;16(21):7015. doi: 10.3390/ma16217015.
In recent years, with the rapid development of the economy and great progress in science and technology, people have become increasingly concerned about their quality of life and physical health. In order to pursue a higher life, various functional and biomimetic textiles have emerged one after another and have been sought after by people. There are many animal and plant surfaces with special wettability in nature, and their unique "micro-nano structures" and low surface energy have attracted extensive attention from researchers. Researchers have prepared various textiles with superhydrophobic features by mimicking these unique structures. This review introduces the typical organisms with superhydrophobicity in nature, using lotus, water strider, and cicada as examples, and describes their morphological features and excellent superhydrophobicity. The theoretical model, commonly used raw materials, and modification technology of superhydrophobic surfaces are analyzed. In addition, the application areas and the current study status of superhydrophobic surfaces for textiles are also summarized. Finally, the development prospects for superhydrophobic textiles based on bionic technology are discussed.
近年来,随着经济的快速发展和科技的巨大进步,人们越来越关注自己的生活质量和身体健康。为了追求更高品质的生活,各种功能性和仿生纺织品相继出现并受到人们的追捧。自然界中有许多具有特殊润湿性的动植物表面,其独特的“微纳结构”和低表面能引起了研究人员的广泛关注。研究人员通过模仿这些独特结构制备了各种具有超疏水特性的纺织品。本文以荷叶、水黾和蝉为例,介绍了自然界中具有超疏水性的典型生物,并描述了它们的形态特征和优异的超疏水性。分析了超疏水表面的理论模型、常用原料和改性技术。此外,还总结了超疏水表面在纺织品上的应用领域和当前研究现状。最后,探讨了基于仿生技术的超疏水纺织品的发展前景。