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Multifunctional nanocomposite hollow fiber membranes by solvent transfer induced phase separation

机译:溶剂转移诱导相分离的多功能纳米复合中空纤维膜

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摘要

The decoration of porous membranes with a dense layer of nanoparticles imparts useful functionality and can enhance membrane separation and anti-fouling properties. However, manufacturing of nanoparticle-coated membranes requires multiple steps and tedious processing. Here, we introduce a facile single-step method in which bicontinuous interfacially jammed emulsions are used to form nanoparticle-functionalized hollow fiber membranes. The resulting nanocomposite membranes prepared via solvent transfer-induced phase separation and photopolymerization have exceptionally high nanoparticle loadings (up to 50 wt% silica nanoparticles) and feature densely packed nanoparticles uniformly distributed over the entire membrane surfaces. These structurally well-defined, asymmetric membranes facilitate control over membrane flux and selectivity, enable the formation of stimuli responsive hydrogel nanocomposite membranes, and can be easily modified to introduce antifouling features. This approach forms a foundation for the formation of advanced nanocomposite membranes comprising diverse building blocks with potential applications in water treatment, industrial separations and as catalytic membrane reactors.
机译:用致密的纳米颗粒层装饰多孔膜可提供有用的功能,并可增强膜分离和防污性能。然而,纳米粒子涂覆的膜的制造需要多个步骤和繁琐的处理。在这里,我们介绍了一种简便的单步方法,其中使用双连续界面堵塞的乳液形成纳米粒子功能化的中空纤维膜。通过溶剂转移诱导的相分离和光聚合制备的所得纳米复合膜具有极高的纳米颗粒负载量(高达50%wt%的二氧化硅纳米颗粒),并且具有紧密填充的纳米颗粒,均匀地分布在整个膜表面上。这些结构明确的非对称膜有助于控制膜通量和选择性,能够形成刺激响应的水凝胶纳米复合膜,并且可以轻松进行修饰以引入防污功能。该方法为形成先进的纳米复合膜奠定了基础,该复合膜由多种结构单元组成,具有在水处理,工业分离和催化膜反应器中的潜在应用。

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