Surface wettability of nanopillar array structures fabricated by bio-template ultimate top-down processes

Sou Takeuchi, D. Ohori, Teruhisa Ishida, Mami Tanaka, Masahiro Sota, Yiming Li, J. Tarng, K. Endo, Seiji Sarnukawa
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Abstract

We made nanopillars with intervals of several tens of nanometers and diameter, and examined wettability. When the interval is narrow, the capillary phenomenon can be suppressed and hydrophobicity is realized. On the other hand, when the interval was widened, the wettability decreased due to the capillary phenomenon. As a result, it was found that the Cassie-Baxter model with filling factor gives a hydrophobic effect as the wetting property becomes narrower.
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生物模板自顶向下工艺制备纳米柱阵列结构的表面润湿性
我们制作了间距为几十纳米和直径的纳米柱,并检测了润湿性。当间隔较窄时,可以抑制毛细现象,实现疏水性。另一方面,当间隙变宽时,由于毛细现象,润湿性降低。结果发现,当润湿特性变窄时,具有填充因子的Cassie-Baxter模型具有疏水效应。
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