A superoleophobic surface with anisotropic flow of hexadecane droplets

In this paper, a grooved mushroom structured surface, with superoleophobicity and anisotropic flow of hexadecane with a low surface tension is reported. The grooved mushroom structure was fabricated using a simple and cost-effective wet etching process on Si wafer. The wetting properties of the fabr...

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Published inMicrosystem technologies : sensors, actuators, systems integration Vol. 23; no. 2; pp. 421 - 427
Main Authors Lee, Dong-Ki, Lee, Eun-Haeng, Cho, Young Hak
Format Journal Article
LanguageEnglish
Published Berlin/Heidelberg Springer Berlin Heidelberg 01.02.2017
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Abstract In this paper, a grooved mushroom structured surface, with superoleophobicity and anisotropic flow of hexadecane with a low surface tension is reported. The grooved mushroom structure was fabricated using a simple and cost-effective wet etching process on Si wafer. The wetting properties of the fabricated surface were studied through static contact angle (CA), contact angle hysteresis (CAH), and tilted angle measurements in the parallel and orthogonal directions. The maximum static CA of hexadecane droplets was 159° in the parallel direction and 142° in the orthogonal direction, respectively. The results from the CAH measurements indicated that the wetting and flow on the grooved mushroom structure were anisotropic. Furthermore, it was verified experimentally that the ridge height and distance between the top layers were key to determining the oleophobicity and anisotropic flow.
AbstractList In this paper, a grooved mushroom structured surface, with superoleophobicity and anisotropic flow of hexadecane with a low surface tension is reported. The grooved mushroom structure was fabricated using a simple and cost-effective wet etching process on Si wafer. The wetting properties of the fabricated surface were studied through static contact angle (CA), contact angle hysteresis (CAH), and tilted angle measurements in the parallel and orthogonal directions. The maximum static CA of hexadecane droplets was 159° in the parallel direction and 142° in the orthogonal direction, respectively. The results from the CAH measurements indicated that the wetting and flow on the grooved mushroom structure were anisotropic. Furthermore, it was verified experimentally that the ridge height and distance between the top layers were key to determining the oleophobicity and anisotropic flow.
Author Cho, Young Hak
Lee, Eun-Haeng
Lee, Dong-Ki
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  organization: Department of Mechanical System Design Engineering, Seoul National University of Science and Technology
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CitedBy_id crossref_primary_10_1007_s00339_018_1595_4
crossref_primary_10_1039_C7TA03248J
crossref_primary_10_1021_acsami_7b08025
crossref_primary_10_1002_admt_202201836
crossref_primary_10_1021_acsami_2c10710
crossref_primary_10_1016_j_surfin_2019_100340
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Parallel Direction
Contact Angle
Liquid Droplet
Orthogonal Direction
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Snippet In this paper, a grooved mushroom structured surface, with superoleophobicity and anisotropic flow of hexadecane with a low surface tension is reported. The...
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Engineering
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Mechanical Engineering
Nanotechnology
Technical Paper
Title A superoleophobic surface with anisotropic flow of hexadecane droplets
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