Optimization of Cu(In, Ga)Se2 (CIGSe) thin film solar cells parameters through numerical simulation and experimental study

被引:10
|
作者
Valencia, D. [1 ]
Conde, J. [1 ,2 ]
Ashok, A. [3 ]
Meza-Avendano, C. A. [1 ]
Vilchis, H. [1 ]
Velumani, S. [3 ]
机构
[1] Univ Ciencias & Artes Chiapas, Inst Invest & Innovac Energias Renovables, Libramiento Norte 1150, Chiapas 29039, Mexico
[2] CONACYT Univ Ciencias & Artes Chiapas, Inst Invest & Innovac Energias Renovables, Libramiento Norte 1150, Chiapas 29039, Mexico
[3] Ctr Invest & Estudios Avanzados IPN, Dept Ingn Elect, Av IPN 2508, Mexico City 07300, DF, Mexico
关键词
Hybrid deposition method; CIGSe thin-film solar cell; J-V characteristics; Density of states; LAYERS THICKNESS; EFFICIENCY; DEPOSITION; SELENIZATION; PERFORMANCE; GROWTH; MODEL; TIME;
D O I
10.1016/j.solener.2021.05.075
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 study utilized the 2-D Silvaco ATLAS simulator to design and optimize the CIGSe thin-film solar cell (TFSC), considering experimental results from the hybrid-deposited CIGSe thin-film layer. The enhanced hybrid fabrication technique promises to yield higher power conversion efficiencies (PCE) for CIGSe-based TFSC and attain the Shockley-Queisser limit for single-junction devices. Another consideration is material utilization to avoid wastages without compromising on efficiency. The novel hybrid technique incorporates vacuum and non-vacuum deposition methods to fabricate the high-efficiency CIGSe absorber material for solar cell applications. The experimental studies involved optimizing the deposition methods and characterizing the deposited thin films for morphological, structural, optical, and electrical properties. Employing simulations in a study allows optimizing parameters, especially defects that may not be observed simply by experiments. During simulations for the CIGSe TFSC structure materials, the defined tail defect parameters studied the performance's deep defects, optimizing parameters favorable in experimental conditions for the CdS/CIGSe heterojunction in the based solar cell structure. The optimized simulated study achieved a record 21.92% of conversion efficiency. The simulated results can pave the way to understanding some carrier and device mechanisms, aiding fabricating low-coat and high-efficient CIGSe TFSC. The substitution of some results with experimental data from the hybrid deposited CIGSe absorber layer and reported optimized experimental values yielded an efficiency of 15.01%.
引用
收藏
页码:298 / 308
页数:11
相关论文
共 50 条
  • [31] The characteristics of Cu(In, Ga)Se2 thin-film solar cells by bandgap grading
    Kim, Young-Ill
    Yang, Kee-Jeong
    Kim, Se-Yun
    Kang, Jin-Kyu
    Kim, Juran
    Jo, William
    Yoo, Hyesun
    Kim, JunHo
    Kim, Dae-Hwan
    JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 2019, 76 : 437 - 442
  • [32] Fabrication methods for performance improvement of Cu(In, Ga) Se2 thin film solar cells
    Choi, P. H.
    Baek, D. H.
    Kim, H. J.
    Kim, K. S.
    Park, H. S.
    Kim, S. S.
    Choi, B. D.
    ELECTRONICS LETTERS, 2013, 49 (24) : 1561 - +
  • [33] Effects of the incorporation of alkali elements on Cu(In,Ga)Se2 thin film solar cells
    Shin, Donghyeop
    Kim, Jekyung
    Gershon, Talia
    Mankad, Ravin
    Hopstaken, Marinus
    Guha, Supratik
    Ahn, Byung Tae
    Shin, Byungha
    SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2016, 157 : 695 - 702
  • [34] Quantitative luminescence mapping of Cu(In, Ga)Se2 thin-film solar cells
    Delamarre, Amaury
    Paire, Myriam
    Guillemoles, Jean-Francois
    Lombez, Laurent
    PROGRESS IN PHOTOVOLTAICS, 2015, 23 (10): : 1305 - 1312
  • [35] Cu(In,Ga)Se2 thin film solar cells with buffer layer alternative to CdS
    Bhattacharya, RN
    Ramanathan, K
    SOLAR ENERGY, 2004, 77 (06) : 679 - 683
  • [36] Photosensitivity of thin-film ZnO/CdS/Cu(In, Ga)Se2 solar cells
    T. Walter
    V. Yu. Rud’
    Yu. V. Rud’
    H. W. Schock
    Semiconductors, 1997, 31 : 681 - 685
  • [37] Equivalent Circuit For AC Response of Cu(In,Ga)Se2 Thin Film Solar Cells
    Cunha, J. M. V.
    Rocha, C.
    Vinhais, C.
    Fernandes, P. A.
    Salome, P. M. P.
    2019 IEEE 46TH PHOTOVOLTAIC SPECIALISTS CONFERENCE (PVSC), 2019, : 923 - 927
  • [38] Microstructural Characterization of Sulfurization Effects in Cu(In,Ga)Se2 Thin Film Solar Cells
    Aboulfadl, Hisham
    Keller, Jan
    Larsen, Jes
    Thuvander, Mattias
    Riekehr, Lars
    Edoff, Marika
    Platzer-Bjorkman, Charlotte
    MICROSCOPY AND MICROANALYSIS, 2019, 25 (02) : 532 - 538
  • [39] Nanoparticle derived Cu(In, Ga)Se2 absorber layer for thin film solar cells
    Ahn, SeJin
    Kim, KiHyun
    Yoon, KyungHoon
    COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2008, 313 : 171 - 174
  • [40] Flexible Cu(In,Ga)Se2 thin-film solar cells for space application
    Otte, Karsten
    Makhova, Liudmila
    Braun, Alexander
    Konovalov, Igor
    THIN SOLID FILMS, 2006, 511 : 613 - 622