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Fizika i Tekhnika Poluprovodnikov, 2021, Volume 55, Issue 4, Page 354 (Mi phts6601)  

This article is cited in 6 scientific papers (total in 6 papers)

Semiconductor physics

Effect of absorber layer thickness on the performance of bismuth-based perovskite solar cells

U. C. Obia, D. M. Sannibc, A. Belloab

a Department of Material Science and Engineering, African University of Science and Technology (AUST), P.M.B. 681 Garki, Abuja, Nigeria
b Department of Theoretical and Applied Physics, African University of Science and Technology (AUST), P.M.B. 681 Garki, Abuja, Nigeria
c Faculty of Natural and Applied Sciences Nile University of Nigeria, Plot 681, Cadastral Zone C-OO, Research and Institution Area Jabi, Abuja, 900001 Nigeria
Full-text PDF (32 kB) Citations (6)
Abstract: Theoretical study of methyl-ammonium bismuth halide perovskite solar cells, (CH$_3$NH$_3$)$_3$Bi$_2$I$_9$, was carried out using a one-dimensional Solar Cell Capacitance Simulator (SCAPS-1D) software. The performance of the tested device architectures largely depends on the thickness of the absorbing layer, with the combination of electron transport, and hole transport layers. Thus, the bismuth perovskite absorber layer was optimized by varying the thickness and also, the thicknesses of the different charge-transport materials such as Spiro-OmeTAD, copper (I) oxide (Cu$_2$O), and copper (I) iodide (CuI) as hole transport layer (HTL), and phenyl-C61-butyric acid methyl ester (PCBM), poly(3-hexylthiophene-2,5-diyl) (P3HT), zinc oxide, and titanium dioxide as electron transport layer (ETL). The best performance in terms of the power conversion efficiency (PCE) was recorded for the device with Cu$_2$O as the HTL and ZnO as the ETL with the absorber layer thickness of 200 nm. The working temperature of the device was varied from 295 to 320 K and the effects of temperature on various device architectures were investigated. Results obtained indication that the efficiency of the bismuth perovskite solar cells can be improved by optimizing the thickness of the absorber layer and utilizing an appropriate combination of HTLs and ETLs.
Keywords: methyl-ammonium bismuth perovskite, SCAPS, HTL, ETL, PCE.
Funding agency Grant number
World Bank African Centers of Excellence Program AUST/PAMI/2015 5415-NG)
This work has been supported by the Pan African Materials Institute (AUST/PAMI/2015 5415-NG) hosted at the African University of Science and Technology under the World Bank African Centers of Excellence Program.
Received: 06.07.2020
Revised: 11.12.2020
Accepted: 14.12.2020
English version:
Semiconductors, 2021, Volume 55, Issue 12, Pages 922–927
DOI: https://doi.org/10.1134/S1063782621040114
Document Type: Article
Language: English
Citation: U. C. Obi, D. M. Sanni, A. Bello, “Effect of absorber layer thickness on the performance of bismuth-based perovskite solar cells”, Fizika i Tekhnika Poluprovodnikov, 55:4 (2021), 354; Semiconductors, 55:12 (2021), 922–927
Citation in format AMSBIB
\Bibitem{ObiSanBel21}
\by U.~C.~Obi, D.~M.~Sanni, A.~Bello
\paper Effect of absorber layer thickness on the performance of bismuth-based perovskite solar cells
\jour Fizika i Tekhnika Poluprovodnikov
\yr 2021
\vol 55
\issue 4
\pages 354
\mathnet{http://mi.mathnet.ru/phts6601}
\transl
\jour Semiconductors
\yr 2021
\vol 55
\issue 12
\pages 922--927
\crossref{https://doi.org/10.1134/S1063782621040114}
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  • This publication is cited in the following 6 articles:
    Citing articles in Google Scholar: Russian citations, English citations
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