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Organic tandem solar cells under indoor light illumination

Authors
Biswas, SwarupYou, Young-JunVincent, PremkumarBae, Jin-HyukShim, Jae WonKim, Hyeok
Issue Date
9월-2020
Publisher
WILEY
Keywords
artificial light harvesting; finite-difference time domain; indoor photovoltaic; tandem
Citation
PROGRESS IN PHOTOVOLTAICS, v.28, no.9, pp.946 - 955
Indexed
SCIE
SCOPUS
Journal Title
PROGRESS IN PHOTOVOLTAICS
Volume
28
Number
9
Start Page
946
End Page
955
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/130475
DOI
10.1002/pip.3301
ISSN
1062-7995
Abstract
The lifetime of a device depends highly on that of its battery. In order to enhance the longevity of microsystems or sensor networks, it is necessary for these devices to be self-powered. Indoor photovoltaics allow the possibility of harvesting artificial light sources for powering microsystems. Whereas indoor photovoltaics based on single active layers have showed high efficiencies under LED lighting, tandem structures have yet to be tested extensively. In our study, we use finite-difference time-domain simulations to study the highest possible short-circuit current density that can be extracted from tandem organic devices. We compare the simulation results to the results for photovoltaic devices based on single bulk active layer heterojunctions. Our simulations found that although detailed balanced band gap calculations show tandem photovoltaics to be viable, the low-intensity emission spectra of white LED light sources can be better harvested by single active layer-based photovoltaics. The current-matching limitation of a tandem photovoltaic structure connected in series limits the highest output current and open-circuit voltage of the device and, thus, its performance for the illumination of lower intensity light.
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공과대학 (전기전자공학부)
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