Kang Yutang, Jiao Shihui, Wang Boran, Lv Xinyan, Wang Wenwen, Yin Wen, Zhang Zhenwei, Zhang Qi, Tan Yumei, Pang Guangsheng
State Key Laboratory of Inorganic Synthesis and Preparative Chemistry, College of Chemistry, Jilin University, Changchun 130012, P. R. China.
ACS Appl Mater Interfaces. 2020 Sep 9;12(36):40925-40936. doi: 10.1021/acsami.0c11266. Epub 2020 Aug 30.
Separation membranes with underliquid dual superlyophobicity have recently caused widespread concern due to their switchable separation of oil-water mixtures and emulsions. However, the fabrication of the reported underliquid dual superlyophobic membranes is difficult, and the design of the underliquid dual superlyophobic surface of these membranes is challenging because of their complex surface composition. Theoretically, underliquid dual superlyophobicity is an underliquid Cassie state attainable by the synergy of the underliquid dual lyophobic surface and the construction of a high-roughness surface. Herein, we fabricated an underliquid dual superlyophobic membrane by combining underliquid dual lyophobic polyvinylidene fluoride (PVDF) and TiO nanowires. PVDF-modified TiO nanowire membranes with underliquid dual superlyophobicity were prepared via a simple adsorption and filtration approach. PVDF was coated onto TiO nanowires to form a PVDF layer with a thickness of 6 nm. The PVDF modification provided flexibility to the fragile TiO nanowires membrane and changed its wettability from underwater superoleophobicity/underoil superhydrophilicity to underliquid dual superlyophobicity. The PVDF-modified TiO nanowires membrane efficiently separated both oil-in-water and water-in-oil emulsions. The binary cooperative effect between the TiO nanowires and the coated PVDF layer was responsible for the underliquid dual superlyophobicity.
具有水下双超疏性的分离膜由于其对油水混合物和乳液的可切换分离性能,近来引起了广泛关注。然而,已报道的水下双超疏性膜的制备过程困难,并且由于其复杂的表面组成,这些膜的水下双超疏性表面设计颇具挑战性。从理论上讲,水下双超疏性是一种通过水下双疏液表面的协同作用以及构建高粗糙度表面而实现的水下卡西状态。在此,我们通过将水下双疏液的聚偏氟乙烯(PVDF)与TiO纳米线相结合,制备了一种水下双超疏性膜。具有水下双超疏性的PVDF改性TiO纳米线膜是通过一种简单的吸附和过滤方法制备的。PVDF被涂覆在TiO纳米线上,形成了一层厚度为6纳米的PVDF层。PVDF改性为脆弱的TiO纳米线膜提供了柔韧性,并将其润湿性从水下超疏油/油下超亲水转变为水下双超疏性。PVDF改性的TiO纳米线膜能够有效地分离水包油和油包水乳液。TiO纳米线与涂覆的PVDF层之间的二元协同效应导致了水下双超疏性。