Xiong Zheng, Yu Haiyang, Gong Xiao
State Key Laboratory of Silicate Materials for Architectures, Wuhan University of Technology, Wuhan 430070, P. R. China.
Langmuir. 2022 Jul 19;38(28):8708-8718. doi: 10.1021/acs.langmuir.2c01366. Epub 2022 Jul 1.
This study demonstrates a simple and fast method to integrate superhydrophobicity, UV protection, and photothermal effect onto PET fabrics. The surface of PET fabric forms a hierarchical rough structure through in situ oxidative polymerization of the pyrrole (Py). The 1,4-conjugate addition reaction between pentaerythritol tetraacrylate, 3-aminopropyltriethoxysilane, and octadecyl acrylate not only endows the PET fabric with superhydrophobicity but also forms a cross-linked network structure which improves the stability of multifunctional coatings on the surface of the PET fabric. In addition, the wettability of the prepared PET fabric is investigated by adjusting the Py monomer and octadecyl acrylate concentration. The results reveal that the prepared PET fabrics exhibit obviously superhydrophobic behavior with a contact angle of 155.8°. The surface temperature of the superhydrophobic PPy/PET fabric can rise to 91 °C under a simulated sunlight which is much higher than the pristine PET fabric, while reaching basically the same steady-state in five heating/cooling cycles. The prepared PET fabric also possesses excellent self-cleaning, UV shielding, and solar light absorption performances. Furthermore, the superhydrophobic PET fabric exhibited excellent stability against 180 °C high temperature, strong UV radiation, different pH solutions and organic solvent erosion, 8 h washing tests, and 25 sandpaper abrasion cycles. These findings provide a path for the future development of multifunctional fabrics using fluorine-free environmentally friendly materials.
本研究展示了一种将超疏水性、紫外线防护和光热效应集成到聚酯(PET)织物上的简单快速方法。通过吡咯(Py)的原位氧化聚合,PET织物表面形成了分级粗糙结构。季戊四醇四丙烯酸酯、3-氨丙基三乙氧基硅烷和丙烯酸十八酯之间的1,4-共轭加成反应不仅赋予PET织物超疏水性,还形成了交联网络结构,提高了PET织物表面多功能涂层的稳定性。此外,通过调节Py单体和丙烯酸十八酯的浓度来研究制备的PET织物的润湿性。结果表明,制备的PET织物表现出明显的超疏水行为,接触角为155.8°。在模拟阳光下,超疏水聚吡咯/PET织物的表面温度可升至91°C,远高于原始PET织物,同时在五个加热/冷却循环中基本达到相同的稳态。制备的PET织物还具有优异的自清洁、紫外线屏蔽和太阳光吸收性能。此外,超疏水PET织物在180°C高温、强紫外线辐射、不同pH值溶液和有机溶剂侵蚀、8小时洗涤测试以及25次砂纸磨损循环下表现出优异的稳定性。这些发现为未来使用无氟环保材料开发多功能织物提供了一条途径。