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듀얼 디퓨저 리소그래피를 이용한 3 차원 마이크로 구조의 제작Fabrication of 3D Micro Structure by Dual Diffuser Lithography

Other Titles
Fabrication of 3D Micro Structure by Dual Diffuser Lithography
Authors
한동호Hafeez, Hassan류헌열조시형박진구
Issue Date
Aug-2013
Publisher
한국재료학회
Keywords
3D micro structure; dual diffuser; diffuser lithography; ground glass diffuser; opal glass diffuser.
Citation
Korean Journal of Materials Research, v.23, no.8, pp 447 - 452
Pages
6
Indexed
SCOPUS
KCI
Journal Title
Korean Journal of Materials Research
Volume
23
Number
8
Start Page
447
End Page
452
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/29718
DOI
10.3740/MRSK.2013.23.8.447
ISSN
1225-0562
2287-7258
Abstract
Recently, products that a have 3-dimensional(3D) micro structure have been in wide use. To fabricate these 3D micro structures, several methods, such as stereo lithography, reflow process, and diffuser lithography, have been used. However,these methods are either very complicated, have limitations in terms of patterns dimensions or need expensive components. To overcome these limitations, we fabricated various 3D micro structures in one step using a pair of diffusers that diffract the incident beam of UV light at wide angles. In the experiment, we used positive photoresist to coat the Si substrate. A pair of diffusers(ground glass diffuser, opal glass diffuser) with Gaussian and Lambertian scattering was placed above the photomask in the passage of UV light in the photolithography equipment. The incident rays of UV light diffracted twice at wider angles while passing through the diffusers. After exposure, the photoresist was developed fabricating the desired 3D micro structure. These micro structures were analyzed using FE-SEM and 3D-profiler data. As a result, this dual diffuser lithography(DDL)technique enabled us to fabricate various microstructures with different dimensions by just changing the combination of diffusers, making this technology an efficient alternative to other complex techniques.
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COLLEGE OF ENGINEERING SCIENCES > DEPARTMENT OF MATERIALS SCIENCE AND CHEMICAL ENGINEERING > 1. Journal Articles

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