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Efficient Oil/Water Separation Membrane Derived from Super-Flexible and Superhydrophilic Core–Shell Organic/Inorganic Nanofibrous Architectures

机译:超柔和超亲水核-壳有机/无机纳米纤维结构衍生的高效油/水分离膜

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摘要

To address the worldwide oil and water separation issue, a novel approach was inspired by natural phenomena to synthesize superhydrophilic and underwater superoleophobic organic/inorganic nanofibrous membranes via a scale up fabrication approach. The synthesized membranes possess a delicate organic core of PVDF-HFP and an inorganic shell of a CuO nanosheet structure, which endows super-flexible properties owing to the merits of PVDF-HFP backbones, and superhydrophilic functions contributed by the extremely rough surface of a CuO nanosheet anchored on flexible PVDF-HFP. Such an organic core and inorganic shell architecture not only functionalizes membrane performance in terms of antifouling, high flux, and low energy consumption, but also extends the lifespan by enhancing its mechanical strength and alkaline resistance to broaden its applicability. The resultant membrane exhibits good oil/water separation efficiency higher than 99.7%, as well as excellent anti-fouling properties for various oil/water mixtures. Considering the intrinsic structural innovation and its integrated advantages, this core–shell nanofibrous membrane is believed to be promising for oil/water separation, and this facile approach is also easy for scaled up manufacturing of functional organic/inorganic nanofibrous membranes with insightful benefits for industrial wastewater treatment, sensors, energy production, and many other related areas.
机译:为了解决全球油水分离问题,自然现象启发了一种新颖的方法,可通过规模化制造方法来合成超亲水性和水下超疏油性有机/无机纳米纤维膜。合成膜具有PVDF-HFP的精细有机核心和CuO纳米片结构的无机壳,由于PVDF-HFP主链的优点而具有超柔韧性,而CuO的极其粗糙的表面则具有超亲水功能纳米片固定在柔性PVDF-HFP上。这种有机核和无机壳结构不仅在防污,高通量和低能耗方面功能化了膜性能,而且通过增强其机械强度和耐碱性来扩展其使用寿命,从而延长了使用寿命。所得的膜表现出高于99.7%的良好的油/水分离效率,以及对各种油/水混合物的优异的防污性能。考虑到固有的结构创新及其综合优势,这种核-壳型纳米纤维膜被认为在油/水分离方面很有前途,而且这种简便的方法也很容易扩大规模生产功能性有机/无机纳米纤维膜,为工业带来深刻的收益废水处理,传感器,能源生产以及许多其他相关领域。

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