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A pH-responsive superwetting nanostructured copper mesh film for separating both water-in-oil and oil-in-water emulsions

机译:用于分离水油和水乳液的pH响应式过雨纳米结构铜网膜

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摘要

Recently, superwetting separating materials for emulsified oil/water mixtures have become a new research focus due to their special advantages such as high efficiency and high flux. So far, although lots of superhydrophobic/superoleophilic and superhydrophilic/underwater superoleophobic films have been prepared for the separation of water-in-oil and oil-in-water emulsions, respectively, smart films that can switch between the above two wetting states and be suitable for the separation of both the two types of emulsions are still rare. Herein, we advance a simple strategy by creating a nanostructure and attaching responsive molecules onto the copper mesh substrate, and report a novel pH-responsive nanostructured copper mesh film. Results indicate that the nanostructure can not only effectively adjust the substrate pore size from the microscale to the nanoscale to meet the requirements for emulsion separation, but can also enhance the surface wettabilities. Combined with the responsive molecules, the film wettability can be switched reversibly between the superhydrophobic/superoleophilic and the superhydrophilic/underwater superoleophobic states. As a result, both water-in-oil and oil-in-water emulsions can be separated on the film with high efficiency and high flux due to the synergy effect between the nanoscale pore structure and the switchable wettability. Given the as-prepared film has such a smart ability, it is believed to be potentially useful in many practical applications, such as sewage treatment and oil recovery.
机译:最近,由于它们的特殊优点如高效率和高通量,因此乳化油/水混合物的超雨液分离材料已成为新的研究重点。到目前为止,虽然已经制备了许多超疏水/超级水下/水下/水下超细的超细膜,分别用于分离水包油和水 - 水乳液,智能膜可以在上述两个润湿状态之间切换适用于两种类型的乳液的分离仍然罕见。在此,我们通过在铜网状基材上产生纳米结构并将响应分子连接到铜网状基材上,提高简单的策略,并报告新的pH-响应纳米结构铜网膜。结果表明,纳米结构不仅可以从微米到纳米载体有效地调节基材孔径,以满足乳液分离的要求,但也可以增强表面湿润。结合响应分子,可以在超疏水/超级抑制和超水下/水下超细状态之间可逆地切换薄膜润湿性。结果,由于纳米级孔结构与可切换润湿性之间的协同效应,可以高效率和高通量在薄膜上分离出水和水包油乳液。鉴于制备的薄膜具有如此聪明的能力,据信在许多实际应用中可能有用,例如污水处理和储存。

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