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초정밀 레이저를 이용한 연꽃잎 표면 자연 모사 연구

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Alternative Title
Laser Micro-Structuring of Super-Hydrophobic Surface for Lotus Effect
Abstract
In a pilot natural super-hydrophobic surfaces study, a super-hydrophobic surface was made by coating, etching, laser ablation, chemical vapor deposition and lithography. In this study, cone-shaped periodic micro and nano-structures were constructed on a silica surface with femtosecond and picosecond laser, and the period of micro-structures between cone shape patterns was increased with 10 μm intervals. The contact angle and image of the super-hydrophobic surface were analysed and the cone (Aspect-ratio 1.27) shape model with micro-protrusion structure similar to the surface of the lotus leaf was made to measure the contact angle. To analyse the differences in the contact angles between the cone shapes and heights of the micro-protrusion, different samples with cone (Aspect-ratio 1.27), sphere (Aspect-ratio 1.00) shapes were made through laser micro-machining technology. To mimick the natural lotus leaves, the optimum condition was a cone shape. Samples of PDMS with different shapes and mixed micro/nano-structures were fabricated with a PDMS mold insert. The largest contact angle was measured at 170.42o which is similar to the contact angle of the lotus leaf. This mold insert could be used repeatedly. The molding process is advantageous for large areas and mass production.
Author(s)
이창준최훈국손익부하준석
Issued Date
2023-04
Type
Article
URI
https://scholar.gist.ac.kr/handle/local/10255
Publisher
한국정밀공학회
Citation
한국정밀공학회지, v.40, no.4, pp.291 - 299
ISSN
1225-9071
Appears in Collections:
ETC > 1. Journal Articles
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