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Cited 37 time in webofscience Cited 39 time in scopus
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Quaternary indoor organic photovoltaic device demonstrating panchromatic absorption and power conversion efficiency of 10%

Authors
Shin, Sang-ChulVincent, PremkumarBae, Jin-HyukLee, Jae JoonNam, MinwooKo, Doo-HyunKim, HyeokShim, Jae Won
Issue Date
Apr-2019
Publisher
ELSEVIER SCI LTD
Keywords
Indoor organic photovoltaic; Indoor light condition; Quaternary; Panchromatic absorption; Finite difference time domain; High shunt resistance
Citation
DYES AND PIGMENTS, v.163, pp 48 - 54
Pages
7
Indexed
SCI
SCIE
SCOPUS
Journal Title
DYES AND PIGMENTS
Volume
163
Start Page
48
End Page
54
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/73105
DOI
10.1016/j.dyepig.2018.11.043
ISSN
0143-7208
1873-3743
Abstract
Recently, while increasing research has been focused toward improving the efficiency of various photovoltaic devices under low light intensities, few studies have reported on multi-donor-, multi-acceptor-based bulk heterojunctions (BHJ). In this study, we have demonstrated the utilization of a quaternary BHJ for indoor light energy harvesting applications. We utilized a PCDTBT:PTB7:PC61BM:PC71BM-based BHJ structure in order to improve the morphology, absorption window, and the charge transport properties of the photovoltaic device. The ability of ternary photovoltaics to attain high power-conversion efficiency (PCE) by improving the morphology and the charge transport properties had already been validated in another study. We show that the advantages of a stable quaternary solar cell can also be achieved with an optimized BHJ composition ratio of 5:5:3:12, which provides a PCE of 10.6%. Our device showed high shunt resistance and low series resistance, thus facilitating appreciable charge extraction even under low-intensity light conditions such as 500 lx white LED illumination.
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