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Regulating Underwater Oil Adhesion on Superoleophobic Copper Films through Assembling n-Alkanoic Acids

机译:通过组装正链烷酸调节超疏油性铜膜上的水下油粘附

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摘要

Controlling liquid adhesion on special wetting surface is significant in many practical applications. In this paper, an easy self-assembled monolayer technique was advanced to modify nanostructured copper substrates, and tunable adhesive underwater superoleophobic surfaces were prepared. The surface adhesion can be regulated by simply varying the chain length of the n-alkanoic acids, and the tunable adhesive properties can be ascribed to the combined action of surfaces nanostructures and related variation in surface chemistry. Meanwhile, the tunable ability is universal, and the oil-adhesion controllability is suitable to various oils including silicon oil, n-hexane, and chloroform. Finally, on the basis of the special tunable adhesive properties, some applications of our surfaces including droplet storage, transfer, mixing, and so on are also discussed. The paper offers a novel and simple method to prepare underwater superoleophobic surfaces with regulated adhesion, which can potentially be applied in numerous fields, for instance, biodetection, microreactors, and microfluidic devices.
机译:在许多实际应用中,控制特殊润湿表面上的液体粘附至关重要。本文提出了一种易于自组装的单层技术来修饰纳米结构的铜基板,并制备了可调节的水下超疏油性胶粘剂表面。可以通过简单地改变正链烷酸的链长来调节表面粘附力,并且可调节的粘附性可以归因于表面纳米结构的结合作用以及表面化学的相关变化。同时,可调能力是通用的,并且油粘附控制性适用于包括硅油,正己烷和氯仿的各种油。最后,基于特殊的可调节粘合特性,还讨论了我们表面的一些应用,包括液滴存储,转移,混合等。本文提供了一种新颖且简单的方法来制备具有可调节附着力的水下超疏油表面,该方法可潜在地应用于许多领域,例如生物检测,微反应器和微流体装置。

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