Dong Li, Shi Min, Xu Sijun, Sun Qilong, Pan Gangwei, Yao Lirong, Zhu Chunhong
School of Textile and Clothing, Nantong University Nantong 226019 P. R. China
Faculty of Textile Science and Technology, Shinshu University 3-15-1 Tokida Ueda Nagano 386-8567 Japan.
RSC Adv. 2020 Jun 12;10(38):22578-22585. doi: 10.1039/d0ra03120h. eCollection 2020 Jun 10.
Poor ultraviolet (UV) resistance and good hydrophilicity lead to light aging of aramid fabrics and cause heat damage to the human body. This scenario occurs when the absorbed water by the fabric evaporates and forms high-temperature water vapor in a high-temperature fire environment, which may scald the human body. Herein, a superhydrophobic hollow TNT network structure was built on surfaces of aramid fibers by surface coating fluorinated TiO nanotubes (TNTs) to develop an air-permeable, UV-protective, and superhydrophobic coating. The as-prepared superhydrophobic aramid fabric exhibited highly superhydrophobic properties against various solutions of sauce, coffee, methylene blue, active red, Au nanoparticles, Ag nanoparticles, HCl, and NaOH with liquid contact angles up to 152-160°. In addition, the superhydrophobic fabric exhibited excellent UV aging resistance (UV protection factor was 100+; 74.58% of strength retention for 24 h of UV radiation compared with 55.15% of untreated fabric), a self-cleaning function against solid soil, and original wearing characteristics, including good breaking strength and air permeability. The developed superhydrophobic coating technology may promote practical application in high-temperature environments for aramid fabrics due to its good UV resistance, chemical resistance, poromericity, superhydrophobicity, anti-fouling, and self-cleaning properties.
芳纶织物抗紫外线能力差且亲水性好,会导致其光老化,并对人体造成热损伤。这种情况发生在织物吸收的水分蒸发,并在高温火灾环境中形成高温水蒸气时,这可能会烫伤人体。在此,通过表面涂覆氟化二氧化钛纳米管(TNTs),在芳纶纤维表面构建了一种超疏水空心TNT网络结构,以开发一种透气、防紫外线且超疏水的涂层。所制备的超疏水芳纶织物对各种溶液(如酱汁、咖啡、亚甲基蓝、活性红、金纳米颗粒、银纳米颗粒、盐酸和氢氧化钠)表现出高度超疏水性能,液体接触角高达152 - 160°。此外,该超疏水织物表现出优异的抗紫外线老化性能(紫外线防护系数大于100;经24小时紫外线辐射后强度保留率为74.58%,而未处理织物为55.15%)、对固体污垢的自清洁功能以及原始的穿着特性,包括良好的断裂强度和透气性。所开发的超疏水涂层技术因其良好的抗紫外线、耐化学性、多孔性、超疏水性、防污和自清洁性能,可能会促进芳纶织物在高温环境中的实际应用。