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Mussel-Inspired Chemistry and Michael Addition Reaction for Efficient Oil/Water Separation

机译:贻贝启发式化学和迈克尔加成反应可有效分离油/水

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An oil/water separation mesh with high separation efficiency and intrusion pressure of water has been successfully developed by combining mussel-inspired chemistry and Michael addition reaction. The substrate of the stainless steel mesh was first coated with the adhesive polydopamine (PDA) film by simple immersion in an aqueous solution of dopamine at pH of 8.5. Then n-dodecyl mercaptan (NDM) was conjugated with PDA film through Michael addition reaction at ambient temperature. The as-prepared mesh showed highly hydrophobicity with the water contact angle of 144° and superoleophilicity with the oil contact angle of 0°. It can be used to separate a series of oil/water mixtures like gasoline, diesel, etc. The separation efficiency remains high after 30 times use (99.95% for hexane/water mixture). More importantly, the relatively high intrusion pressure (2.2 kPa) gives the opportunity to separation of large amount of oil and water mixtures. This study provides a new prospect to simply introduce multiple molecules on the adhesive PDA-based mesh to achieve various functional oil/water separation materials.
机译:通过结合贻贝化学反应和迈克尔加成反应,成功开发出具有高分离效率和水侵入压力的油/水分离网。首先通过简单地浸入pH值为8.5的多巴胺水溶液中,在不锈钢网的基材上涂覆聚多巴胺(PDA)薄膜。然后在环境温度下通过迈克尔加成反应将正十二烷基硫醇(NDM)与PDA膜偶联。所制备的筛网在144°的水接触角下显示出高度疏水性,而在0°的油接触角下显示出超亲油性。它可用于分离一系列油/水混合物,例如汽油,柴油等。使用30次后,分离效率仍然很高(己烷/水混合物为99.95%)。更重要的是,相对较高的侵入压力(2.2 kPa)使得有机会分离大量的油和水混合物。这项研究提供了一个新的前景,即可以简单地在基于PDA的粘性网格上引入多个分子,从而获得各种功能的油/水分离材料。

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