Simulation of inverted pyramid perovskite solar cells

In order to improve the performance of perovskite solar cells, we optimize the contact interface structure between the functional layers, and adjust the thickness of each functional layer. By using COMSOL multi-physics simulation software, we simulate the structure of perovskite solar cells, and ver...

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Main Authors: CHEN Mingxing, YAN Peiguang, LI Xiaohong
Format: Article
Language:English
Published: Science Press (China Science Publishing & Media Ltd.) 2022-07-01
Series:Shenzhen Daxue xuebao. Ligong ban
Subjects:
Online Access:https://journal.szu.edu.cn/en/#/digest?ArticleID=2437
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author CHEN Mingxing
YAN Peiguang
LI Xiaohong
author_facet CHEN Mingxing
YAN Peiguang
LI Xiaohong
author_sort CHEN Mingxing
collection DOAJ
description In order to improve the performance of perovskite solar cells, we optimize the contact interface structure between the functional layers, and adjust the thickness of each functional layer. By using COMSOL multi-physics simulation software, we simulate the structure of perovskite solar cells, and verify the influence of the optimized structure on the electrical performance of the cell. The results show that the inverted pyramid structure on the interface of functional layers will affect the photoelectric conversion efficiency. When the inverted pyramid structure is set between the electronic transmission layer and the light absorption layer, the maximum output power density of 27.36 mW/cm2 can be obtained, the photoelectric conversion efficiency is 27.3%, the corresponding open circuit voltage is 1.19 V, the short circuit current density is 26.64 mA/cm2, and the filling factor is 86.19 %. The research results provide structural optimization ideas for further improving the overall performance of perovskite solar cells.
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id doaj-art-4a1ac8ee64ae4bd59e85b904d54d80ea
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issn 1000-2618
language English
publishDate 2022-07-01
publisher Science Press (China Science Publishing & Media Ltd.)
record_format Article
series Shenzhen Daxue xuebao. Ligong ban
spelling doaj-art-4a1ac8ee64ae4bd59e85b904d54d80ea2025-08-20T03:02:47ZengScience Press (China Science Publishing & Media Ltd.)Shenzhen Daxue xuebao. Ligong ban1000-26182022-07-0139436937610.3724/SP.J.1249.2022.043691000-2618(2022)04-0369-08Simulation of inverted pyramid perovskite solar cellsCHEN MingxingYAN PeiguangLI XiaohongIn order to improve the performance of perovskite solar cells, we optimize the contact interface structure between the functional layers, and adjust the thickness of each functional layer. By using COMSOL multi-physics simulation software, we simulate the structure of perovskite solar cells, and verify the influence of the optimized structure on the electrical performance of the cell. The results show that the inverted pyramid structure on the interface of functional layers will affect the photoelectric conversion efficiency. When the inverted pyramid structure is set between the electronic transmission layer and the light absorption layer, the maximum output power density of 27.36 mW/cm2 can be obtained, the photoelectric conversion efficiency is 27.3%, the corresponding open circuit voltage is 1.19 V, the short circuit current density is 26.64 mA/cm2, and the filling factor is 86.19 %. The research results provide structural optimization ideas for further improving the overall performance of perovskite solar cells.https://journal.szu.edu.cn/en/#/digest?ArticleID=2437optical engineeringperovskite solar cellsimulationphotoelectric conversion efficiencyinverted pyramid structureoutput power density
spellingShingle CHEN Mingxing
YAN Peiguang
LI Xiaohong
Simulation of inverted pyramid perovskite solar cells
Shenzhen Daxue xuebao. Ligong ban
optical engineering
perovskite solar cell
simulation
photoelectric conversion efficiency
inverted pyramid structure
output power density
title Simulation of inverted pyramid perovskite solar cells
title_full Simulation of inverted pyramid perovskite solar cells
title_fullStr Simulation of inverted pyramid perovskite solar cells
title_full_unstemmed Simulation of inverted pyramid perovskite solar cells
title_short Simulation of inverted pyramid perovskite solar cells
title_sort simulation of inverted pyramid perovskite solar cells
topic optical engineering
perovskite solar cell
simulation
photoelectric conversion efficiency
inverted pyramid structure
output power density
url https://journal.szu.edu.cn/en/#/digest?ArticleID=2437
work_keys_str_mv AT chenmingxing simulationofinvertedpyramidperovskitesolarcells
AT yanpeiguang simulationofinvertedpyramidperovskitesolarcells
AT lixiaohong simulationofinvertedpyramidperovskitesolarcells