Proposal and Numerical Analysis of Organic/Sb2Se3 All-Thin-Film Tandem Solar Cell

被引:9
|
作者
Alanazi, Tarek I. [1 ]
Alanazi, Abdulaziz [2 ]
Touti, Ezzeddine [2 ,3 ]
Agwa, Ahmed M. [2 ,4 ]
Kraiem, Habib [2 ,5 ]
Alanazi, Mohana [6 ]
Alanazi, Abdulrahman M. [2 ]
El Sabbagh, Mona [7 ]
机构
[1] Northern Border Univ, Coll Sci, Dept Phys, Ar Ar 73222, Saudi Arabia
[2] Northern Border Univ, Coll Engn, Dept Elect Engn, Ar Ar 73222, Saudi Arabia
[3] Univ Tunis, Elect Engn Dept, Lab Ind Syst Engn & Renewable Energies LISIER, Tunis 1008, Tunisia
[4] Al Azhar Univ, Fac Engn, Dept Elect Engn, Cairo 11651, Egypt
[5] Univ Gabes, Natl Engn Sch Gabes, Proc Energy Environm & Elect Syst, Gabes 6029, Tunisia
[6] Jouf Univ, Coll Engn, Dept Elect Engn, Sakaka 72388, Saudi Arabia
[7] Ain Shams Univ, Fac Engn, Engn Phys & Math Dept, Cairo 11535, Egypt
关键词
thin film; tandem solar cell; Sb2Se3; organic; current matching condition; Silvaco TCAD; EFFICIENCY; POLYMER; LAYER;
D O I
10.3390/polym15112578
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
The low bandgap antimony selenide (Sb2Se3) and wide bandgap organic solar cell (OSC) can be considered suitable bottom and top subcells for use in tandem solar cells. Some properties of these complementary candidates are their non-toxicity and cost-affordability. In this current simulation study, a two-terminal organic/Sb2Se3 thin-film tandem is proposed and designed through TCAD device simulations. To validate the device simulator platform, two solar cells were selected for tandem design, and their experimental data were chosen for calibrating the models and parameters utilized in the simulations. The initial OSC has an active blend layer, whose optical bandgap is 1.72 eV, while the initial Sb2Se3 cell has a bandgap energy of 1.23 eV. The structures of the initial standalone top and bottom cells are ITO/PEDOT:PSS/DR3TSBDT:PC71BM/PFN/Al, and FTO/CdS/Sb2Se3/Spiro-OMeTAD/Au, while the recorded efficiencies of these individual cells are about 9.45% and 7.89%, respectively. The selected OSC employs polymer-based carrier transport layers, specifically PEDOT:PSS, an inherently conductive polymer, as an HTL, and PFN, a semiconducting polymer, as an ETL. The simulation is performed on the connected initial cells for two cases. The first case is for inverted (p-i-n)/(p-i-n) cells and the second is for the conventional (n-i-p)/(n-i-p) configuration. Both tandems are investigated in terms of the most important layer materials and parameters. After designing the current matching condition, the tandem PCEs are boosted to 21.52% and 19.14% for the inverted and conventional tandem cells, respectively. All TCAD device simulations are made by employing the Atlas device simulator given an illumination of AM1.5G (100 mW/cm(2)). This present study can offer design principles and valuable suggestions for eco-friendly solar cells made entirely of thin films, which can achieve flexibility for prospective use in wearable electronics.
引用
收藏
页数:18
相关论文
共 50 条
  • [31] Optimizing Sb2Se3 thin-film solar cells: A comprehensive simulation study of multiple influential factors
    Moujoud S.
    Hartiti B.
    Touhtouh S.
    Belhora F.
    Hajjaji A.
    Optik, 2024, 303
  • [32] 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)
  • [33] Analysis of CdSe as an alternative buffer layer for Sb2Se3 solar cells
    Torabi, Narges
    Artegiani, Elisa
    Gasparotto, Andrea
    Piccinelli, Fabio
    Meneghini, Matteo
    Meneghesso, Gaudenzio
    Romeo, Alessandro
    SOLAR ENERGY, 2023, 264
  • [34] Chemical etching of Sb2Se3 solar cells: surface chemistry and back contact behaviour
    Shiel, Huw
    Hutter, Oliver S.
    Phillips, Laurie J.
    Al Turkestani, Mohammed
    Dhanak, Vin R.
    Veal, Tim D.
    Durose, Ken
    Major, Jonathan D.
    JOURNAL OF PHYSICS-ENERGY, 2019, 1 (04):
  • [35] Selenization of Sb2Se3 absorber layer: An efficient step to improve device performance of CdS/Sb2Se3 solar cells
    Leng, Meiying
    Luo, Miao
    Chen, Chao
    Qin, Sikai
    Chen, Jie
    Zhong, Jie
    Tang, Jiang
    APPLIED PHYSICS LETTERS, 2014, 105 (08)
  • [36] Alternative back contacts for Sb2Se3 solar cells
    Zhang, Jun
    Kondrotas, Rokas
    Lu, Shuaicheng
    Wang, Chong
    Chen, Chao
    Tang, Jiang
    SOLAR ENERGY, 2019, 182 : 96 - 101
  • [37] Influence of Substrate on Sb2Se3/CdS Heterojunction Thin Film Solar Cells and Evaluation of Their Performance by Dark J-V Analysis
    Govindharajulu, Srinivasan Moosi
    Anandan, Rohini
    Madaka, Ramakrishna
    Rath, Jatindra Kumar
    Piraviperumal, Malar
    PROGRESS IN PHOTOVOLTAICS, 2025, 33 (02): : 357 - 371
  • [38] A numerical approach to maximizing efficiency in Sb2Se3 solar cells by using CuS as a hole transport material
    El Khalfi, Abdelmajid
    Ouhadou, Malika
    Rais, Ilham
    Essahlaoui, Fouad
    Rahman, Md. Ferdous
    Sahal, Mustapha
    Elmaimouni, Lahoucine
    Benami, Abdellah
    EUROPEAN PHYSICAL JOURNAL PLUS, 2023, 138 (12)
  • [39] Modeling Efficiency Loss in Sb2Se3 Solar Cells
    Dang, Hongmei
    Valdivia, Jonathan Prado
    Robera, Jinfessa
    Onwuvuche, Oluchi
    Lodge, Travis
    Ososanya, Esther
    Wang, Lei
    2020 47TH IEEE PHOTOVOLTAIC SPECIALISTS CONFERENCE (PVSC), 2020, : 2775 - 2780
  • [40] Flexible NIR-transparent perovskite solar cells for all-thin-film tandem photovoltaic devices
    Pisoni, Stefano
    Fu, Fan
    Feurer, Thomas
    Makha, Mohammed
    Bissig, Benjamin
    Nishiwaki, Shiro
    Tiwari, Ayodhya N.
    Buecheler, Stephan
    JOURNAL OF MATERIALS CHEMISTRY A, 2017, 5 (26) : 13639 - 13647