Numerical simulations on CZTS/CZTSe based solar cell with ZnSe as an alternative buffer layer using SCAPS-1D

被引:33
|
作者
Srivastava, Ashutosh [1 ]
Dua, Piyush [2 ]
Lenka, T. R. [1 ]
Tripathy, S. K. [1 ]
机构
[1] Natl Inst Technol, Dept Elect & Commun, Solar Cell Fabricat Lab, Silchar, India
[2] Univ Technol & Appl Sci Suhar, Dept Engn, Sohar, Oman
关键词
Solar cell; Buffer layer; Defect; SCAPS-1D; DEVICE;
D O I
10.1016/j.matpr.2020.10.986
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In CZTS based solar cells, there have been intensive research to replace the toxic CdS buffer layer with alternative materials. In this paper, we proposed and simulated structure of CZTS/CZTSe based Solar Cell Al-ZnO/i-ZnO/ZnSe/Absorber/Mo with ZnSe as a buffer layer using SCAPS-1D simulator. Further, we have investigated the same structure employing different absorber layers such as CZTS, CZTSe and stacking of CZTS and CZTSe sequentially. The optimization of solar cell device is carried out and efficiency found to be 16.24%, 19.59% and 21.17% where the thickness of the absorber layer is 1.5 mm, 1 mm, 2.5 mm and 1 mm, respectively, for CZTS, CZTSe and stacking of CZTS and CZTSe. The calculated values of efficiency (g), fill factor (FF), open circuit voltage (Voc) and current density (Jsc) are compared with the data available in literature with CdS as the buffer layer. (c) 2020 Elsevier Ltd. All rights reserved. Selection and peer-review under responsibility of the scientific committee of the International Conference on Nanoelectronics, Nanophotonics, Nanomaterials, Nanobioscience & Nanotechnology.
引用
收藏
页码:3735 / 3739
页数:5
相关论文
共 50 条
  • [1] Numerical Simulations on CZTSSe-Based Solar Cells with GaSe as an Alternative Buffer Layer Using SCAPS-1D
    Wu, Xuefei
    Hao, Liangsheng
    Wei, Zhongquan
    Wu, Yixiang
    Ma, Xinxia
    Cheng, Zhihai
    Wu, Jiang
    Qi, Yongfeng
    Meng, Xiangrui
    Su, Jiaxin
    ECS JOURNAL OF SOLID STATE SCIENCE AND TECHNOLOGY, 2022, 11 (11)
  • [2] Development of high efficiency CZTS solar cell through buffer layer parameters optimization using SCAPS-1D
    Yasin, Shadi
    Abu Waar, Ziad
    Al Zoubi, Tariq
    MATERIALS TODAY-PROCEEDINGS, 2020, 33 : 1825 - 1829
  • [3] Prospects of buffer layer optimization for electrodeposited CZTS-based thin-film solar cell using SCAPS-1D
    Alee, Soheil
    Soltanmohammadi, Mina
    Abrari, Masoud
    Ghanaatshoar, Majid
    INTERNATIONAL JOURNAL OF MODERN PHYSICS B, 2025, 39 (08):
  • [4] Modeling and simulation of CZTS based solar cells with ZnS buffer layer and ZnO:F as a window layer using SCAPS-1D
    Yassine, B.
    Tahar, B.
    Fathi, G.
    CHALCOGENIDE LETTERS, 2022, 19 (08): : 503 - 511
  • [5] Metal oxides as buffer layers for CZTS based solar cells: A numerical analysis by SCAPS-1D software
    Maharana, Basudeba
    Jha, Rajan
    Chatterjee, Shyamal
    OPTICAL MATERIALS, 2022, 131
  • [6] Effect of alternative buffer layers for SnS based solar cells: Numerical analysis using SCAPS-1D
    Garmim, Taoufik
    Benaissa, Nouhaila
    Soussi, Lahcen
    Mghaiouini, Redouane
    Bouabdalli, El Mahdi
    El Ghaouti, Chahid
    El Jouad, Zouhair
    Louardi, Ahmed
    Hartiti, Bouchaib
    Monkade, Mohamed
    MATERIALS TODAY-PROCEEDINGS, 2022, 66 : 146 - 150
  • [7] Numerical study of CZTS/CZTSSe tandem thin film solar cell using SCAPS-1D
    Benzetta, Abd Elhalim
    Abderrezek, Mahfoud
    Djeghlal, Mohammed Elamine
    OPTIK, 2021, 242 (242):
  • [8] A comparative study of different buffer layers for CZTS solar cell using Scaps-1D simulation program
    Belarbi, F.
    Rahal, W.
    Rached, D.
    Benghabrit, S.
    Adnane, M.
    OPTIK, 2020, 216
  • [9] Enhancing the Efficiency of CZTS Solar Cells With Dual HTL Configuration and a Novel Buffer Layer Using SCAPS-1D
    Merabet, Sarra
    Bendenia, Chahrazed
    Bendenia, Souhila
    Merad-Dib, Hanaa
    Moulebhar, Samia
    Khantar, Sid Ahmed
    CHEMISTRYSELECT, 2025, 10 (06):
  • [10] Development of CZTGS/CZTS tandem thin film solar cell using SCAPS-1D
    Adewoyin, Adeyinka D.
    Olopade, Muteeu A.
    Oyebola, Olusola O.
    Chendo, Micheal A.
    OPTIK, 2019, 176 : 132 - 142