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不稳定胶体悬浮液的电泳沉积用于制备超疏水表面。

Electrophoretic deposition of unstable colloidal suspensions for superhydrophobic surfaces.

机构信息

Department of Mechanical Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, United States.

出版信息

Langmuir. 2011 Apr 5;27(7):4156-63. doi: 10.1021/la200286t. Epub 2011 Mar 1.

Abstract

A novel method to fabricate superhydrophobic surfaces using electrophoretic deposition (EPD) is presented. EPD presents a readily scalable, customizable, and potentially low cost surface manufacturing process. Low surface energy materials with high surface roughness are achieved using EPD of unstable hydrophobic SiO(2) particle suspensions. The effect of suspension stability on surface roughness is quantitatively explored with optical absorbance measurements (to determine suspension stability) and atomic force microscopy (to measure surface roughness). Varying suspension pH modulates suspension stability. Contrary to most applications of EPD, we show that superhydrophobic surfaces favor mildly unstable suspensions since they result in high surface roughness. Particle agglomerates formed in unstable suspensions lead to highly irregular films after EPD. After only 1 min of EPD, we obtain surfaces with low contact angle hysteresis and static contact angles exceeding 160°. We also present a technique to enhance the mechanical durability of the superhydrophobic surfaces by adding a polymeric binder to the suspension prior to EPD.

摘要

提出了一种使用电泳沉积(EPD)制造超疏水表面的新方法。EPD 提供了一种易于扩展、可定制且具有潜在低成本的表面制造工艺。使用不稳定的疏水性 SiO2 颗粒悬浮液的 EPD 实现了具有高表面粗糙度的低表面能材料。通过光学吸收率测量(确定悬浮液稳定性)和原子力显微镜(测量表面粗糙度)定量研究了悬浮液稳定性对表面粗糙度的影响。悬浮液 pH 的变化调节悬浮液的稳定性。与 EPD 的大多数应用相反,我们表明超疏水表面有利于轻度不稳定的悬浮液,因为它们会导致高表面粗糙度。在不稳定的悬浮液中形成的颗粒团聚物在 EPD 后导致非常不规则的薄膜。仅经过 1 分钟的 EPD,我们就获得了具有低接触角滞后和静态接触角超过 160°的表面。我们还提出了一种通过在 EPD 之前将聚合物粘合剂添加到悬浮液中来增强超疏水表面的机械耐久性的技术。

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