Wrinkled, Dual-Scale Structures of Diamond-Like Carbon (DLC) for Superhydrophobicity

Authors
Rahmawan, YudiMoon, Myoung-WoonKim, Kyung-SukLee, Kwang-RyeolSuh, Kahp-Yang
Issue Date
2010-01-05
Publisher
AMER CHEMICAL SOC
Citation
LANGMUIR, v.26, no.1, pp.484 - 491
Abstract
We present a simple two-step method to fabricate dual-scale superhydrophobic surfaces by using replica molding of poly(dimethylsiloxane) (PDMS) micropillars, followed by deposition of a thin, hard coating layer of a SiO(x)-incorporated diamond-like carbon (DLC). The resulting Surface consists of microscale PDMS pillars covered by nanoscale wrinkles that are induced by residual compressive stress of the DLC coating and a difference in elastic moduli between DLC and PDMS without any external stretching or thermal contraction on the PDMS substrate. We show that the surface exhibits superhydrophobic properties with a static contact angle over 160 degrees for micropillar spacing ratios (interpillar gap divided by diameter) less than 4. A transition of the wetting angle to approximately 130 degrees occurs for larger spacing ratios, changing the wetting from a Cassie-Cassie state (C(m)-C(n)) to a Wenzel-Cassie state (W(m)-C(n)), where m and n denote micro- and nanoscale roughness, respectively. The robust superhydrophobicity of the Cassie-Cassie state is attributed to stability of the Cassie state on the nanoscale wrinkle structures of the hydrophobic DLC coating, which is further explained by a simple mathematical theory on wetting states with decoupling of nano- and microscale roughness in dual scale structures.
Keywords
A-C-H; ION-BEAM; ROUGHNESS STRUCTURES; WETTING PROPERTIES; WATER-REPELLENT; THIN-FILMS; SURFACES; WETTABILITY; SIOX; COATINGS; A-C-H; ION-BEAM; ROUGHNESS STRUCTURES; WETTING PROPERTIES; WATER-REPELLENT; THIN-FILMS; SURFACES; WETTABILITY; SIOX; COATINGS; DLC; wrinkle; superhydrophobic; HMDSO; hierarchical surfaces; dual roughness; *2009년 기관고유 반영완료; *2009년 개인평가 반영완료
ISSN
0743-7463
URI
https://pubs.kist.re.kr/handle/201004/131784
DOI
10.1021/la902129k
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KIST Article > 2010
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