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具有可调超疏水性的柔性聚四氟乙烯纳米锥阵列表面用于自清洁和水滴图案化

Flexible Teflon nanocone array surfaces with tunable superhydrophobicity for self-cleaning and aqueous droplet patterning.

作者信息

Toma Mana, Loget Gabriel, Corn Robert M

机构信息

Department of Chemistry, University of California-Irvine , Irvine, California 92697, United States.

出版信息

ACS Appl Mater Interfaces. 2014 Jul 23;6(14):11110-7. doi: 10.1021/am500735v. Epub 2014 Apr 1.

Abstract

Tunable hydrophobic/hydrophilic flexible Teflon nanocone array surfaces were fabricated over large areas (cm(2)) by a simple two-step method involving the oxygen plasma etching of a colloidal monolayer of polystyrene beads on a Teflon film. The wettability of the nanocone array surfaces was controlled by the nanocone array dimensions and various additional surface modifications. The resultant Teflon nanocone array surfaces were hydrophobic and adhesive (a "gecko" type of surface on which a water droplet has a high contact angle but stays in place) with a contact angle that correlated with the aspect ratio/sharpness of the nanocones. The surfaces switched to a superhydrophobic or "lotus" type of surface when hierarchical nanostructures were created on Teflon nanocones by modifying them with a gold nanoparticle (AuNPs) film. The nanocone array surfaces could be made superhydrophobic with a maximum contact angle of 160° by the further modification of the AuNPs with an octadecanethiol (C18SH) monolayer. Additionally, these nanocone array surfaces became hydrophilic when the nanocone surfaces were sequentially modified with AuNPs and hydrophilic polydopamine (PDA) layers. The nanocone array surfaces were tested for two potential applications: self-cleaning superhydrophobic surfaces and for the passive dispensing of aqueous droplets onto hybrid superhydrophobic/hydrophilic microarrays.

摘要

通过一种简单的两步法,在大面积(平方厘米)的特氟龙薄膜上制备了可调节疏水/亲水的柔性特氟龙纳米锥阵列表面,该方法包括对特氟龙薄膜上的聚苯乙烯珠胶体单层进行氧等离子体蚀刻。纳米锥阵列表面的润湿性由纳米锥阵列尺寸和各种额外的表面改性控制。所得的特氟龙纳米锥阵列表面具有疏水性和粘附性(一种“壁虎”型表面,水滴在其上具有高接触角但保持原位),其接触角与纳米锥的纵横比/尖锐度相关。当通过用金纳米颗粒(AuNPs)薄膜对特氟龙纳米锥进行改性而在其上创建分层纳米结构时,表面转变为超疏水或“莲花”型表面。通过用十八烷硫醇(C18SH)单层对AuNPs进行进一步改性,纳米锥阵列表面可以制成超疏水,最大接触角为160°。此外,当纳米锥表面依次用AuNPs和亲水聚多巴胺(PDA)层改性时,这些纳米锥阵列表面变得亲水。对纳米锥阵列表面进行了两种潜在应用的测试:自清洁超疏水表面以及将水滴被动分配到混合超疏水/亲水微阵列上。

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