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Efficient Flexible Organic Solar Cells with a Low-Temperature-Processed Al-Doped Zinc Oxide Electron Transport Layer

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Abstract
Zinc oxide (ZnO) has been widely used in inverted organic solar cells (I-OSCs) as the electron transport layer (ETL) due to its excellent electrical properties. However, the high-temperature process (>300 degrees C) applied to the ZnO ETL to enhance its electrical properties has been regarded as the bottleneck for application of this ETL to flexible I-OSCs due to the limited temperature tolerance of flexible substrates. In this work, we synthesized aluminum (Al)-doped ZnO with a sol-gel process (AZO) and successfully demonstrated highly efficient flexible I-OSCs with a low-temperature-processed (140 degrees C) AZO ETL (AZO 140 degrees C). Since Al doping of ZnO results in an enhanced electrical conductivity and reduced defects in ZnO even for lowtemperature-treated materials, the rigid and flexible I-OSCs with AZO 140 degrees C ETLs exhibit power conversion efficiencies (PCEs) of 16.3 and 14.4%, respectively, which are higher than those of I-OSCs with low-temperatureprocessed (140 degrees C) ZnO ETLs. Furthermore, the unencapsulated I-OSC with the AZO ETL exhibits improved storage stability (T-80 > 5000 h) compared to that with the ZnO ETL (T-80 = 100 h), and an excellent thickness-insensitive PCE is also obtained for the IOSCs with various thicknesses of the AZO ETL (22-190 nm). These results provide meaningful insight into reducing the process temperature of an ETL toward high-performance, flexible electronic systems.
Author(s)
Jang JubinKim Ju-HyeonLee SanseongOh Chang-MokHwang In-WookKim SeungchanPark AeriKang DonghyunJang ChelimKi TaeyoonKim HeejooLee, Kwang Hee
Issued Date
2023-09
Type
Article
DOI
10.1021/acsaem.3c01860
URI
https://scholar.gist.ac.kr/handle/local/10025
Publisher
AMER CHEMICAL SOC
Citation
ACS Applied Energy Materials, v.6, no.18, pp.9778 - 9787
ISSN
2574-0962
Appears in Collections:
Department of Chemistry > 1. Journal Articles
Department of Materials Science and Engineering > 1. Journal Articles
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