Highly transparent ZTO/Ag/ZTO multilayer electrode deposited by inline sputtering process for organic photovoltaic cells

Authors
Cho, Se-HeePandey, RinaWie, Chang-HwanLee, Yun JaeLim, Ju-WonPark, Dong-HeeSeok, Jee-SooJang, Yoon-HeeKim, Kyung-KonHwang, Do KyungByun, Dong-JinChoi, Won-Kook
Issue Date
2014-08
Publisher
WILEY-V C H VERLAG GMBH
Citation
PHYSICA STATUS SOLIDI A-APPLICATIONS AND MATERIALS SCIENCE, v.211, no.8, pp.1860 - 1867
Abstract
Indium-free ZTO/Ag/ZTO multilayer electrodes were deposited on glass by RF sputtering of zinc tin oxide (ZTO) and pulsed DC sputtering of silver (Ag) at room temperature in the specially designed Inline sputtering system and evaluated as transparent electrode of organic photovoltaic cells (OPVs). The dependence of the electrical and optical properties of ZTO films on the O-2/Ar+O-2 ratio was investigated. We fabricated the ZTO/Ag/ZTO multilayer electrode with a sheet resistance of 8.38-10.18 Omega sq(-1) and average transmittance of 84.4-85.5% in the visible region (lambda = 380-770 nm), which is compatible with commercial indium tin oxide (ITO). As an application, organic solar cells fabricated on the ZTO/Ag/ZTO multilayer electrodes with the conventional device architecture were compared with those on commercial ITO electrodes. The bulk heterojunction OPVs fabricated on the multilayer electrodes exhibited a short-circuit current (J(SC)) of 7.06 mA cm(-2), a fill factor (FF) of 0.62, an open-circuit voltage of (V-OC) of 0.64 V, and a power-conversion efficiency of 2.80%. This indicates that ZTO/Ag/ZTO multilayer electrode is a promising electrode scheme for bulk heterojunction organic photovoltaic cells (BHJ-OPVs). (C) 2014 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
Keywords
OXIDE SEMICONDUCTORS; SOLAR-CELLS; TIN OXIDE; OXIDE SEMICONDUCTORS; SOLAR-CELLS; TIN OXIDE; electrical properties; optical absorption; organic solar cells; silver; transparent electrodes; zinc tin oxide
ISSN
1862-6300
URI
https://pubs.kist.re.kr/handle/201004/126557
DOI
10.1002/pssa.201330594
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KIST Article > 2014
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