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Cited 19 time in webofscience Cited 22 time in scopus
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Versatile use of ZnO interlayer in hybrid solar cells for self-powered near infra-red photo-detecting application

Authors
Kim, Jun YoungVincent, PremkumarJang, JaewonJang, Min SeokChoi, MuhanBae, Jin-HyukLee, ChangheeKim, Hyeok
Issue Date
15-Jan-2020
Publisher
Elsevier BV
Keywords
Hybrid solar cells; Optical spacer; Near-infrared organic-inorganic absorber; Optical modeling
Citation
Journal of Alloys and Compounds, v.813
Indexed
SCIE
SCOPUS
Journal Title
Journal of Alloys and Compounds
Volume
813
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/7007
DOI
10.1016/j.jallcom.2019.152202
ISSN
0925-8388
1873-4669
Abstract
We investigate the possibility of shifting the absorption peak of the hybrid solar cell into the red to near infra-red (NIR) region using a ZnO optical spacer. Poly[2,6-(4,4-bis-(2-ethylhexyl)-4H-cyclopenta [2,1-b; 3,4-b']dithiophene)-alt-4,7(2,1,3-benzothiadiazole)] (PCPDTBT) exhibits a 700 nm wavelength peak absorption and is a low-bandgap polymer. Zinc oxide (ZnO) was used as an n-type semiconducting electron acceptor. The efficiency was enhanced by introducing a ZnO optical spacer layer. A finite-difference time-domain simulation was performed with the aim to extract the largest simulated short-circuit current density from the hybrid photovoltaic cell structure. Via the simulation, we also tuned the ZnO thickness to make the solar cell sensitive to the NIR wavelengths and thus obtained the optimal structures for various active layer thicknesses suitable for NIR absorption applications. This study aims to demonstrate the applicability of the PCPDTBT:ZnO hybrid solar cell as a multi-functional NIR absorber cum solar cell which has potential applications in energy harvesting window coating, NIR photodetector, and tandem solar subcell through the use of a ZnO optical layer to control the light-induced electric field distribution inside the device structure. (C )2019 Elsevier B.V. All rights reserved.
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