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金属荷叶的质地与润湿性

Texture and wettability of metallic lotus leaves.

作者信息

Frankiewicz C, Attinger D

机构信息

Iowa State University, Mechanical Engineering, Ames, IA 50011, USA.

出版信息

Nanoscale. 2016 Feb 21;8(7):3982-90. doi: 10.1039/c5nr04098a.

Abstract

Superhydrophobic surfaces with the self-cleaning behavior of lotus leaves are sought for drag reduction and phase change heat transfer applications. These superrepellent surfaces have traditionally been fabricated by random or deterministic texturing of a hydrophobic material. Recently, superrepellent surfaces have also been made from hydrophilic materials, by deterministic texturing using photolithography, without low-surface energy coating. Here, we show that hydrophilic materials can also be made superrepellent to water by chemical texturing, a stochastic rather than deterministic process. These metallic surfaces are the first analog of lotus leaves, in terms of wettability, texture and repellency. A mechanistic model is also proposed to describe the influence of multiple tiers of roughness on wettability and repellency. This demonstrated ability to make hydrophilic materials superrepellent without deterministic structuring or additional coatings opens the way to large scale and robust manufacturing of superrepellent surfaces.

摘要

具有荷叶自清洁特性的超疏水表面在减阻和相变传热应用中备受关注。传统上,这些超疏水表面是通过对疏水材料进行随机或确定性纹理化来制造的。最近,超疏水表面也由亲水材料制成,通过光刻技术进行确定性纹理化,无需低表面能涂层。在此,我们表明亲水材料也可以通过化学纹理化(一种随机而非确定性的过程)变得对水具有超疏水性。就润湿性、纹理和疏水性而言,这些金属表面是荷叶的首个类似物。还提出了一个机理模型来描述多层粗糙度对润湿性和疏水性的影响。这种在无需确定性结构化或额外涂层的情况下使亲水材料具有超疏水性的能力,为大规模且稳健地制造超疏水表面开辟了道路。

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