SCAPS numerical analysis of solid-state dye-sensitized solar cell utilizing copper (I) iodide as hole transport layer

Here, numerical study of solid-state dye-sensitized solar cell (SSDSSC) with Copper (I) Iodide as a hole transport layer was investigated using SCAPS-1D simulation software. The complete simulated device structures in this project are composed of FTO/TiO2/N719/CuI/Ni. Several key parameters of HTL s...

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Main Authors: Arith, Faiz, Noorasid, Nur Syamimi, Firhat, Ain Yasmin, Mustafa, Ahmad Nizamuddin, Mohd Shah, Ahmad Syahiman
Format: Article
Language:English
Published: Chulalongkorn University, Bangkok, Thailand 2022
Online Access:http://eprints.utem.edu.my/id/eprint/26676/2/ej/article/download/4414/4414-Article%20Text-20766-2-10-20220302.pdf
http://eprints.utem.edu.my/id/eprint/26676/
https://engj.org/index.php/ej/article/view/4414
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spelling my.utem.eprints.266762023-03-24T11:36:14Z http://eprints.utem.edu.my/id/eprint/26676/ SCAPS numerical analysis of solid-state dye-sensitized solar cell utilizing copper (I) iodide as hole transport layer Arith, Faiz Noorasid, Nur Syamimi Firhat, Ain Yasmin Mustafa, Ahmad Nizamuddin Mohd Shah, Ahmad Syahiman Here, numerical study of solid-state dye-sensitized solar cell (SSDSSC) with Copper (I) Iodide as a hole transport layer was investigated using SCAPS-1D simulation software. The complete simulated device structures in this project are composed of FTO/TiO2/N719/CuI/Ni. Several key parameters of HTL such as layer thickness, doping concentration, working temperature, and interface defect have been analysed to obtain the highest efficiency for SSDSSC as well as the influence of back contact. The incorporation with various ETLs such as TiO2, ZnO, and SnO2 were also studied. The results show that SSDSSC with back contact yields a better performance due to low HTL thickness compared to without back contact. In addition, it can also be proved that TiO2 as ETL obtained the best efficiency up to 5.6%. Further investigation also found that combining optimized CuI and TiO2 parameters with a perovskite layer would increase cell efficiency to nearly 30%, higher than previously reported devices. The proposed parameter structure may trigger the temptation for the use of CuI as HTL in solar cell application. Chulalongkorn University, Bangkok, Thailand 2022-02-28 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/26676/2/ej/article/download/4414/4414-Article%20Text-20766-2-10-20220302.pdf Arith, Faiz and Noorasid, Nur Syamimi and Firhat, Ain Yasmin and Mustafa, Ahmad Nizamuddin and Mohd Shah, Ahmad Syahiman (2022) SCAPS numerical analysis of solid-state dye-sensitized solar cell utilizing copper (I) iodide as hole transport layer. Engineering Journal, 26 (2). 01-10. ISSN 0125-8281 https://engj.org/index.php/ej/article/view/4414 10.4186/ej.2022.26.2.1
institution Universiti Teknikal Malaysia Melaka
building UTEM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknikal Malaysia Melaka
content_source UTEM Institutional Repository
url_provider http://eprints.utem.edu.my/
language English
description Here, numerical study of solid-state dye-sensitized solar cell (SSDSSC) with Copper (I) Iodide as a hole transport layer was investigated using SCAPS-1D simulation software. The complete simulated device structures in this project are composed of FTO/TiO2/N719/CuI/Ni. Several key parameters of HTL such as layer thickness, doping concentration, working temperature, and interface defect have been analysed to obtain the highest efficiency for SSDSSC as well as the influence of back contact. The incorporation with various ETLs such as TiO2, ZnO, and SnO2 were also studied. The results show that SSDSSC with back contact yields a better performance due to low HTL thickness compared to without back contact. In addition, it can also be proved that TiO2 as ETL obtained the best efficiency up to 5.6%. Further investigation also found that combining optimized CuI and TiO2 parameters with a perovskite layer would increase cell efficiency to nearly 30%, higher than previously reported devices. The proposed parameter structure may trigger the temptation for the use of CuI as HTL in solar cell application.
format Article
author Arith, Faiz
Noorasid, Nur Syamimi
Firhat, Ain Yasmin
Mustafa, Ahmad Nizamuddin
Mohd Shah, Ahmad Syahiman
spellingShingle Arith, Faiz
Noorasid, Nur Syamimi
Firhat, Ain Yasmin
Mustafa, Ahmad Nizamuddin
Mohd Shah, Ahmad Syahiman
SCAPS numerical analysis of solid-state dye-sensitized solar cell utilizing copper (I) iodide as hole transport layer
author_facet Arith, Faiz
Noorasid, Nur Syamimi
Firhat, Ain Yasmin
Mustafa, Ahmad Nizamuddin
Mohd Shah, Ahmad Syahiman
author_sort Arith, Faiz
title SCAPS numerical analysis of solid-state dye-sensitized solar cell utilizing copper (I) iodide as hole transport layer
title_short SCAPS numerical analysis of solid-state dye-sensitized solar cell utilizing copper (I) iodide as hole transport layer
title_full SCAPS numerical analysis of solid-state dye-sensitized solar cell utilizing copper (I) iodide as hole transport layer
title_fullStr SCAPS numerical analysis of solid-state dye-sensitized solar cell utilizing copper (I) iodide as hole transport layer
title_full_unstemmed SCAPS numerical analysis of solid-state dye-sensitized solar cell utilizing copper (I) iodide as hole transport layer
title_sort scaps numerical analysis of solid-state dye-sensitized solar cell utilizing copper (i) iodide as hole transport layer
publisher Chulalongkorn University, Bangkok, Thailand
publishDate 2022
url http://eprints.utem.edu.my/id/eprint/26676/2/ej/article/download/4414/4414-Article%20Text-20766-2-10-20220302.pdf
http://eprints.utem.edu.my/id/eprint/26676/
https://engj.org/index.php/ej/article/view/4414
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score 13.160551