Theoretical exploration of high VOC in Cu2SnS3 thin film solar cells towards high efficiency

被引:10
|
作者
Nayeen, Mohammad Julkar [1 ]
Mondal, Bipanko Kumar [1 ]
Basu, Sangita Rani [2 ]
Hossain, Jaker [3 ]
机构
[1] Pundra Univ Sci & Technol, Dept Elect & Elect Engn, Bogura 5800, Bangladesh
[2] Univ Chittagong, Dept Elect Elect Engn, Chittagong 4331, Bangladesh
[3] Univ Rajshahi, Dept Elect & Elect Engn, Solar Energy Lab, Rajshahi 6205, Bangladesh
关键词
Cu2SnS3; CuGaSe2; HighVOC; High efficiency; SCAPS-1D; OPTICAL-PROPERTIES; PERFORMANCE; LAYER; CUGASE2; SINGLE; DEPOSITION; GROWTH;
D O I
10.1016/j.solener.2023.112076
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This article manifests the outstanding performance of copper-tin-sulphide (Cu2SnS3)-based doubleheterojunction (DH) photovoltaic cell. The n-type ZnSe as window and the p+-type CGS (CuGaSe2) as back surface field (BSF) layer have been used for the p-type Cu2SnS3 base layer. The SCAPS-1D simulator is used for the simulation of this photovoltaic cell and demonstrating the effects of each layer. The n-ZnSe/p-Cu2SnS3 heterojunction has displayed a power conversion efficiency (PCE) of 17.69 % with JSC = 32.39 mA/cm2, VOC = 0.60 V, and FF = 80.58 %, when functioning alone. An enrichment of PCE to 38.14 % has been observed, owing to the addition of CGS as a BSF layer in the proposed structure. The VOC also develops enormously to 1.22 V in dual-heterojunctions, which boosts the PCE. The effective band alignment between ZnSe/Cu2SnS3 and Cu2SnS3/CuGaSe2 interfaces produces greater built-in potential that is liable to generate high VOC. The built-in potential of the device is 1.54 V according to the C-V study. These outcomes imply that the n-ZnSe/p-Cu2SnS3/ p+-CGS device would be a viable alternative for harvesting solar energy in the era of thin film solar cells.
引用
收藏
页数:10
相关论文
共 50 条
  • [1] Cu2SnS3 as a Potential Absorber for Thin Film Solar Cells
    Tiwari, Devendra
    Chaudhuri, T. K.
    Shripathi, T.
    Deshpande, U.
    SOLID STATE PHYSICS, PTS 1 AND 2, 2012, 1447 : 1039 - +
  • [2] Thin film solar cells based on the ternary compound Cu2SnS3
    Berg, Dominik M.
    Djemour, Rabie
    Guetay, Levent
    Zoppi, Guillaume
    Siebentritt, Susanne
    Dale, Phillip J.
    THIN SOLID FILMS, 2012, 520 (19) : 6291 - 6294
  • [3] Solution-processed Cu2SnS3 thin film solar cells
    Li, Jianmin
    Huang, Jianliu
    Zhang, Yan
    Wang, Yaguang
    Xue, Cong
    Jiang, Guoshun
    Liu, Weifeng
    Zhu, Changfei
    RSC ADVANCES, 2016, 6 (63) : 58786 - 58795
  • [4] Current Remedy in Ultrathin Crystalline Si Solar Cell by Cu2SnS3 Thin Film toward High Efficiency
    Mondal, Bipanko Kumar
    Abir, Ahnaf Tahmid
    Hossain, Jaker
    ENERGY TECHNOLOGY, 2024, 12 (04)
  • [5] Fabrication of Cu2SnS3 thin-film solar cells with power conversion efficiency of over 4%
    Kanai, Ayaka
    Toyonaga, Kotoba
    Chino, Kotaro
    Katagiri, Hironori
    Araki, Hideaki
    JAPANESE JOURNAL OF APPLIED PHYSICS, 2015, 54 (08)
  • [6] Cu2SnS3 Thin-Film Solar Cells from Electroplated Precursors
    Koike, Junpei
    Chino, Kotaro
    Aihara, Naoya
    Araki, Hideaki
    Nakamura, Ryota
    Jimbo, Kazuo
    Katagiri, Hironori
    JAPANESE JOURNAL OF APPLIED PHYSICS, 2012, 51 (10)
  • [7] Cu2SnS3 based thin film solar cells from chemical spray pyrolysis
    Sayed, Mohamed H.
    Robert, Erika V. C.
    Dale, Phillip J.
    Guetay, Levent
    THIN SOLID FILMS, 2019, 669 : 436 - 439
  • [8] Effect of Ag doping on the performance of Cu2SnS3 thin-film solar cells
    Zhao, Yun
    Chang, Le
    Dong, Xiao-Fei
    Zhang, Hui-Xia
    Li, Yan
    Chen, Jian-Biao
    SOLAR ENERGY, 2020, 201 : 190 - 194
  • [9] Towards high efficiency thin film solar cells
    Han, Guifang
    Zhang, Sam
    Boix, Pablo P.
    Wong, Lydia Helena
    Sun, Lidong
    Lien, Shui-Yang
    PROGRESS IN MATERIALS SCIENCE, 2017, 87 : 246 - 291
  • [10] Effects of different precursors on Cu2SnS3 thin film solar cells prepared by sputtering method
    Xu, Xin
    Wang, Shurong
    Ma, Xun
    Yang, Min
    Lu, Yilei
    Yang, Shuai
    Tang, Zhen
    VACUUM, 2018, 157 : 223 - 228