Improving Photocurrent in Sb2Se3 Thin-Film Solar Cells Through Sb2S3 Electron Reflector Layer: A Simulation Study

被引:4
|
作者
Jalali, Hadi [1 ]
Orouji, Ali A. [1 ]
Gharibshahian, Iman [1 ]
机构
[1] Semnan Univ, Dept Elect & Comp Engn, Semnan 3513119111, Iran
关键词
current density; recombination; Sb2S3 electron reflector layer; Sb2Se3 solar cells; simulation study; EFFICIENCY; ABSORBER; PERFORMANCE;
D O I
10.1002/adts.202300594
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
In this paper, antimony sulfide (Sb2S3) material is utilized as an electron reflector layer (ERL) in antimony selenide (Sb2Se3) solar cells. The primary objective of this simulation study is to mitigate recombination at the back contact and improve cell performance. It is demonstrated that incorporating Sb2S3 ERL into a traditional Sb2Se3 cell yields enhancements in both the short-circuit current density (Jsc) and carrier collection rate. This enhancement is assigned to the reduced interface recombination rate at the back electrical contact. The strong electric field at the p(+)-Sb2S3/p-Sb2Se3 electrical contact creates a barrier with a height of 0.34 eV in the conduction band that hinders the electron carriers' access to the back contact. This barrier effectively improves cell efficiency. The use of this method has demonstrated a significant improvement in the external quantum efficiency (EQE) at longer wavelengths, specifically ranging from approximate to 800 to 1100 nm. Using this method, the Sb2Se3 active layer thickness is reduced to 1 mu m, which reduces the fabrication cost. After optimizing the device, the cell efficiency enhances from 9.2% to 13.1%, resulting in a significant improvement compared to traditional Sb2Se3 solar cells without an ERL, thanks to the incorporation of a suitable Sb2S3 ERL.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] Optimisation of Sb2S3 thin-film solar cells via Sb2Se3 post-treatment
    Wang, Rui
    Qin, Deyang
    Ding, Xiaolei
    Zhang, Qipei
    Wang, Youyang
    Pan, Yanlin
    Weng, Guoen
    Hu, Xiaobo
    Tao, Jiahua
    Chu, Junhao
    Akiyama, Hidefumi
    Chen, Shaoqiang
    JOURNAL OF POWER SOURCES, 2023, 556
  • [2] ZnxCd1-xSySe1-y as an effective electron transport layer for improving the efficiency of Sb2S3 and Sb2Se3 thin-film solar cells
    Saadat, M.
    EUROPEAN PHYSICAL JOURNAL PLUS, 2024, 139 (03):
  • [3] ZnxCd1–xSySe1–y as an effective electron transport layer for improving the efficiency of Sb2S3 and Sb2Se3 thin-film solar cells
    M. Saadat
    The European Physical Journal Plus, 139
  • [4] Optical loss analysis of Sb2S3 and Sb2Se3 thin film solar cells: A Quantitative Assessment
    Hajjiah, Ali
    PHYSICA SCRIPTA, 2023, 98 (12)
  • [5] Performance investigation of Sb2S3 and Sb2Se3 earth abundant based thin film solar cells
    Khadir, A.
    OPTICAL MATERIALS, 2022, 127
  • [6] Efficiency enhancement of Sb2Se3 thin-film solar cells by the co-evaporation of Se and Sb2Se3
    Li, Zhiqiang
    Zhu, Hongbing
    Guo, Yuting
    Niu, Xiaona
    Chen, Xu
    Zhang, Chong
    Zhang, Wen
    Liang, Xiaoyang
    Zhou, Dong
    Chen, Jingwei
    Mai, Yaohua
    APPLIED PHYSICS EXPRESS, 2016, 9 (05)
  • [7] Sb2Se3 versus Sb2S3 solar cell: A numerical simulation
    Mamta
    Maurya, K. K.
    Singh, V. N.
    SOLAR ENERGY, 2021, 228 : 540 - 549
  • [8] Laser scribing of Sb2Se3 thin-film solar cells
    Giovanardi, Fabio
    Khozeymeh, Foroogh
    Bissoli, Francesco
    Rampino, Stefano
    Gilioli, Edmondo
    Trevisi, Giovanna
    Mazzer, Massimo
    Selleri, Stefano
    2021 CONFERENCE ON LASERS AND ELECTRO-OPTICS EUROPE & EUROPEAN QUANTUM ELECTRONICS CONFERENCE (CLEO/EUROPE-EQEC), 2021,
  • [9] Exploring the potential of standalone and tandem solar cells with Sb2S3 and Sb2Se3 absorbers: a simulation study
    Z. Dahmardeh
    M. Saadat
    Scientific Reports, 13
  • [10] Exploring the potential of standalone and tandem solar cells with Sb2S3 and Sb2Se3 absorbers: a simulation study
    Dahmardeh, Z.
    Saadat, M.
    SCIENTIFIC REPORTS, 2023, 13 (01)