首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Fine Switching between Underwater Superoleophilicity and Underwater Superoleophobicity while Maintaining Superhydrophobicity
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Fine Switching between Underwater Superoleophilicity and Underwater Superoleophobicity while Maintaining Superhydrophobicity

机译:水下超级渗透性和水下超脂肪性的细微切换,同时保持超疏水性

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摘要

Switching between superhydrophobicity/underwater superoleophilicity and superhydrophilicity/underwater superoleophobicity has been widely designed. Recently, superwettability is subdivided into multiple extreme wetting states for oil, water, and air as wetting and medium phases. However, fine switching among the multiple superwettability is rare. Here, a pH-responsive case is presented to demonstrate the fine switching between underwater superoleophilicity and underwater superoleophobicity while maintaining superhydrophobicity. The surface chemistry of silver-roughened copper coatings is elaborately manipulated by water-repellent perfluoroalkyl and alkyl chains and the smart terminal carboxyl group. By adjusting the pH value of water, the completely opposite extreme wetting states for oil in water are precisely controlled. Simultaneously, the extreme repellence for water in the air can be kept owing to the fairly low surface energy of the perfluoroalkyl chain. This discovery accelerates the subdivision of superwettability and the achievement of unusual superwetting switching.
机译:广泛设计了超疏水性/水下超级电泳和超级水中/水下超级渗透性的切换。最近,将超薄性分为多个极端润湿状态,用于油,水和空气作为润湿和中阶段。然而,多种超薄的细微切换是罕见的。这里,提出了pH-响应性案例以证明水下疏水性和水下超脂肪团之间的细切换,同时保持过疏水性。通过防水全氟烷基和烷基链和智能末端羧基精巧地操纵银粗糙铜涂层的表面化学。通过调节水的pH值,精确控制水中的油脂的完全相反的极润湿状态。同时,由于全氟烷基链的相当低的表面能,可以保持空气中的水中的极端障碍。这一发现加速了超薄的细分和不寻常的超雨刷切换的实现。

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