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Manipulation of the Superhydrophobicity of Plasma-Etched Polymer Nanostructures

机译:等离子刻蚀的聚合物纳米结构的超疏水性的​​操纵。

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摘要

The manipulation of droplet mobility on a nanotextured surface by oxygen plasma is demonstrated by modulating the modes of hydrophobic coatings and controlling the hierarchy of nanostructures. The spin-coating of polytetrafluoroethylene (PTFE) allows for heterogeneous hydrophobization of the high-aspect-ratio nanostructures and provides the nanostructured surface with “sticky hydrophobicity”, whereas the self-assembled monolayer coating of perfluorodecyltrichlorosilane (FDTS) results in homogeneous hydrophobization and “slippery superhydrophobicity”. While the high droplet adhesion (stickiness) on a nanostructured surface with the spin-coating of PTFE is maintained, the droplet contact angle is enhanced by creating hierarchical nanostructures via the combination of oxygen plasma etching with laser interference lithography to achieve “sticky superhydrophobicity”. Similarly, the droplet mobility on a slippery nanostructured surface with the self-assembled monolayer coating of FDTS is also enhanced by employing the hierarchical nanostructures to achieve “slippery superhydrophobicity” with modulated slipperiness.
机译:通过调节疏水涂层的模式并控制纳米结构的层次,可以证明氧等离子体对纳米结构化表面上的液滴迁移率的控制作用。聚四氟乙烯(PTFE)的旋涂可实现高纵横比纳米结构的不均匀疏水化,并为纳米结构表面提供“粘性疏水性”,而全氟癸基三氯硅烷(FDTS)的自组装单层涂层可实现均质疏水化,湿滑的超疏水性”。在通过PTFE旋涂保持纳米结构表面上的高液滴附着力(粘性)的同时,通过氧等离子体蚀刻与激光干涉光刻技术的结合,形成分层的纳米结构,从而提高了液滴的接触角,从而实现了“粘性超疏水性”。类似地,通过采用分层纳米结构来实现具有调制滑爽性的“滑爽超疏水性”,也可以增强具有FDTS自组装单层涂层的滑爽纳米结构表面上的液滴迁移率。

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