Fan Shumin, Jiang Sujie, Wang Zhenjie, Liang Pengchao, Fan Wenxiu, Zhuo Kelei, Xu Guangri
Postdoctoral Research Base, Henan Institute of Science and Technology, Xinxiang 453003, China.
Postdoctoral Research Station, School of Chemistry and Chemical Engineering, Henan Normal University, Xinxiang 453007, China.
Nanomaterials (Basel). 2022 Jul 21;12(14):2510. doi: 10.3390/nano12142510.
Superhydrophobic materials have been widely applied in rapid removal and collection of oils from oil/water mixtures for increasing damage to environment and human beings caused by oil-contaminated wastewater and oil spills. Herein, superhydrophobic materials were fabricated by a novel polypyrrole (PPy)/ZnO coating followed by hexadecyltrimethoxysilane (HDTMS) modification for versatile oil/water separation with high environmental and excellent reusability. The prepared superhydrophobic surfaces exhibited water contact angle (WCA) greater than 150° and SA less than 5°. The superhydrophobic fabric could be applied for separation of heavy oil or light oil/water mixtures and emulsions with the separation efficiencies above 98%. The coated fabric also realized highly efficient separation with harsh environmental solutions, such as acid, alkali, salt, and hot water. The superhydrophobic fabric still remained, even after 80 cycles of separation and 12 months of storage in air, proving excellent durability. These novel superhydrophobic materials have indicated great development potentials for oil/water separation in practical applications.
超疏水材料已被广泛应用于从油/水混合物中快速去除和收集油类,以减少油污废水和石油泄漏对环境和人类造成的损害。在此,通过一种新型的聚吡咯(PPy)/ZnO涂层,随后进行十六烷基三甲氧基硅烷(HDTMS)改性,制备了超疏水材料,用于通用的油/水分离,具有高环境适应性和优异的可重复使用性。制备的超疏水表面的水接触角(WCA)大于150°,滑动角(SA)小于5°。该超疏水织物可用于分离重油或轻油/水混合物及乳液,分离效率高于98%。涂覆的织物在酸性、碱性、盐性和热水等苛刻环境溶液中也能实现高效分离。即使经过80次分离循环和在空气中储存12个月后,超疏水织物仍然保持良好性能,证明了其优异的耐久性。这些新型超疏水材料在实际应用中的油/水分离方面显示出巨大的发展潜力。