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Superhydrophobic fabrics for oil-water separation based on the metal organic charge transfer complex CuTCNAQ

机译:基于金属有机电荷转移配合物CuTCNAQ的油水分离超疏水织物

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摘要

This work reports on the fabrication of a superhydrophobic nylon textile based on the organic charge transfer complex CuTCNAQ (TCNAQ = 11,11,12,12-tetracyanoanthraquinodimethane). The nylon fabric that is metallized with copper undergoes a spontaneous chemical reaction with TCNAQ dissolved in acetonitrile to form nanorods of CuTCNAQ that are intertwined over the entire surface of the fabric. This creates the necessary micro and nanoscale roughness that is required for the Cassie-Baxter state thereby achieving a superhydrophobic/superoleophilic surface without the need for a fluorinated surface. The material is characterised with SEM, FT-IR and XPS spectroscopy and investigated for its ability to separate oil and water in two modes, namely under gravity and as an absorbent. It is found that the fabric can separate dichloromethane, olive oil and crude oil from water and in fact reduce the water content of the oil during the separation process. The fabric is reusable and tolerant to conditions such as seawater, hydrochloric acid and extensive time periods on the shelf. Given that CuTCNAQ is a copper based semiconductor may also open up the possibility of other applications in areas such as photocatalysis and antibacterial applications.
机译:这项工作报告了基于有机电荷转移复合物CuTCNAQ(TCNAQ = 11,11,12,12-四氰基蒽醌二甲烷)的超疏水尼龙纺织品的制造。用铜金属化的尼龙织物与溶解在乙腈中的TCNAQ发生自发化学反应,形成CuTCNAQ纳米棒,这些纳米棒缠绕在织物的整个表面上。这产生了Cassie-Baxter状态所需的必要的微米和纳米级粗糙度,从而无需氟化表面即可获得超疏水/超亲油性表面。该材料通过SEM,FT-IR和XPS光谱进行了表征,并研究了其在两种模式下(即在重力作用下和作为吸收剂)分离油和水的能力。发现该织物可以从水中分离出二氯甲烷,橄榄油和原油,并且实际上在分离过程中降低了油中的水含量。该织物可重复使用,并能耐诸如海水,盐酸和货架上较长时间的条件。鉴于CuTCNAQ是铜基半导体,也可能在光催化和抗菌应用等领域开辟其他应用的可能性。

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