Xiong Zhu, Lin Haibo, Liu Fu, Xiao Peng, Wu Ziyang, Li Tiantian, Li Dehong
Polymer and Composite Division, Ningbo Institute of Material Technology & Engineering, Chinese Academy of Sciences, Ningbo, China.
Sci Rep. 2017 Oct 26;7(1):14099. doi: 10.1038/s41598-017-14429-2.
Instability of superwetting surface is the stumbling block of flexible polymeric membranes for continuous separation of water-in-oil or oil-in-water emulsions. Manipulation of rigid superwetting nano-TiO on hierarchical poly(vinylidene fluoride) (PVDF) membrane by mimicking the plant roots holding soil behaviour enabled the generation of robust superwetting surface withstanding the harshly physical and chemical torture. The unique interface combination, which fabricated by a compacted nano-layer with the thickness of ~20 μm, was disclosed by systematic structure characterization. As demonstrated by SEM, LSCM and nano-CT, the pristine PVDF membrane with large quantities of cilia-like micro/nano-fibrils can function as the plant roots to capture, cage and confine the nanoparticles to form a robustly rigid nano-coating. The as-prepared membranes showed excellent durable separation performance both in varieties of stabilized water-in-oil and oil-in-water emulsion separation for a long term with few nanoparticles loss in a continuous crossflow mode. The strategy of assembling rigid inorganic nano-particles on flexible surface offers a window of opportunity for preparation of robust organic-inorganic hybrid membranes not only for continuous oil/water emulsion separation, but also for other functional application, such as electric conduction, heat conduction, ion exchange, and in membrane catalytic reactors etc.
超润湿性表面的不稳定性是柔性聚合物膜连续分离油包水或水包油乳液的绊脚石。通过模仿植物根系固定土壤的行为,在分级聚偏氟乙烯(PVDF)膜上操控刚性超润湿性纳米TiO,能够生成坚固的超润湿性表面,以承受严苛的物理和化学折磨。通过系统的结构表征揭示了由厚度约为20μm的致密纳米层构成的独特界面组合。如扫描电子显微镜(SEM)、激光扫描共聚焦显微镜(LSCM)和纳米计算机断层扫描(nano-CT)所示,具有大量纤毛状微/纳米纤维的原始PVDF膜可起到植物根系的作用,捕获、包围并限制纳米颗粒,形成坚固的刚性纳米涂层。所制备的膜在多种稳定的油包水和水包油乳液分离中均表现出优异的持久分离性能,在连续错流模式下长期运行时纳米颗粒损失极少。在柔性表面组装刚性无机纳米颗粒的策略为制备坚固的有机-无机杂化膜提供了契机,不仅可用于连续油/水乳液分离,还可用于其他功能应用,如导电、导热、离子交换以及膜催化反应器等。