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유연한 유기태양전지의 수분 투습 방지를 위해 원자층 증착법으로 제조된 Al2O3 박막에 대한 연구Study on the Atomic Layer Deposition of Al2O3 Thin Film as Moisture Barrier Layer for High Efficiency Flexible Organic Solar Cell

Other Titles
Study on the Atomic Layer Deposition of Al2O3 Thin Film as Moisture Barrier Layer for High Efficiency Flexible Organic Solar Cell
Authors
이봄임주현권도윤오영택김시몬신진용임회연이수언김승희김봉훈
Issue Date
Dec-2020
Publisher
한국섬유공학회
Keywords
moisture barrier layer; water vapor transmittance rate; atomic layer deposition; polyethylene naphthalate
Citation
한국섬유공학회지, v.57, no.6, pp.393 - 399
Journal Title
한국섬유공학회지
Volume
57
Number
6
Start Page
393
End Page
399
URI
http://scholarworks.bwise.kr/ssu/handle/2018.sw.ssu/40237
DOI
10.12772/TSE.2020.57.393
ISSN
1225-1089
Abstract
A moisture barrier layer with high density and uniformity is essential forincreasing the lifespan of optoelectronic devices such as flexible organic solar cells, LEDs,and photodetectors. In this study, various surface pre-treatments (O2 plasma, UVOtreatment, Al seed layer, and thermal annealing process) were performed on a polyethylenenaphthalate (PEN) film to form a functional group of chemical adsorption with the atomiclayer deposition (ALD) precursor. We investigated the effect of the surface pre-treatment ofa PEN substrate for a deposition of Al2O3 thin film in terms of the deposition uniformity andwater vapor transmittance rate (WVTR). For example, the root mean square roughness ofthe bare PEN film/Al2O3 was RRMS=3.26 nm, whereas the O2 plasma treated PEN film/Al2O3had RRMS=0.99 nm because of the presence of a functional group. As a result, WVTR of barePEN film/Al2O3 was 0.83 g/m²/day, whereas that of O2 plasma treated PEN film/Al2O3decreased to 0.38 g/m²/day.
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