Numerical Analysis in DFT and SCAPS-1D on the Influence of Different Charge Transport Layers of CsPbBr3 Perovskite Solar Cells

被引:97
|
作者
Hossain, M. Khalid [8 ,9 ]
Mohammed, Mustafa K. A. [10 ]
Pandey, Rahul [1 ]
Arnab, A. A. [2 ]
Rubel, M. H. K. [3 ]
Hossain, K. M. [3 ]
Ali, Md Hasan [4 ]
Rahman, Md. Ferdous [4 ]
Bencherif, H. [5 ]
Madan, Jaya [1 ]
Islam, Md. Rasidul [6 ]
Samajdar, D. P. [7 ]
Bhattarai, Sagar
机构
[1] Chitkara Univ, Chitkara Univ Inst Engn & Technol, VLSI Ctr Excellence, Rajpura 140401, Punjab, India
[2] Ahsanullah Univ Sci & Technol, Dept Elect & Elect Engn, Dhaka 1208, Bangladesh
[3] Univ Rajshahi, Dept Mat Sci & Engn, Rajshahi 6205, Bangladesh
[4] Begum Rokeya Univ, Dept Elect & Elect Engn, Rangpur 5400, Bangladesh
[5] LEREESI, Higher Natl Sch Renewable Energies, Environm & Sustainable Dev, Batna 05078, Algeria
[6] Bangamata Sheikh Fojilatunnesa Mujib Sci & Technol, Dept Elect & Elect Engn, Jamalpur 2012, Bangladesh
[7] Indian Inst Informat Technol, Dept ECE Design & Mfg, Nagpur 482005, Madhya Pradesh, India
[8] Bangladesh Atom Energy Commiss, Atom Energy Res Estab, Inst Elect, Dhaka 1349, Bangladesh
[9] Kyushu Univ, Interdisciplinary Grad Sch Engn Sci, Dept Adv Energy Engn Sci, Fukuoka 8168580, Japan
[10] Univ Warith Al Anbiyaa, Karbala 56001, Iraq
关键词
EFFICIENT; PERFORMANCE; DEPOSITION; DESIGN; SEMICONDUCTOR; SIMULATION; LENGTHS; PHASE; FILMS;
D O I
10.1021/acs.energyfuels.3c00035
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
The power conversion efficiency (PCE) of cesium lead halide (CsPbX3, X = l, Br, and Cl)-based all-inorganic perovskite solar cells (PSCs) is still struggling to compete with conventional organic-inorganic halide perovskites. A combined material and device-related analysis is much needed to understand the working principle to explore the efficiency potential of CsPbX3-based PSCs. Therefore, here, density functional theory (DFT) and SCAPS-1D-based studies were reported to evaluate the photovoltaic (PV) performance of CsPbBr3-based PSCs. DFT is first applied to assess and extract structural and optoelectronic properties (band structure, density of states, Fermi surface, and absorption coefficient) of the considered absorber layer. The calculated electronic band gap (Eg) of the CsPbBr3 absorber was 1.793 eV, which matched well with the earlier computed theoretical value. Additionally, the Pb 6p orbital contributed largely to the calculated density of states (DOS), and the electronic charge density map showed that the Pb atom acquired the majority of charges. In order to examine the optical response of CsPbBr3, optical characteristics were computed and correlated with electronic properties for its probable photovoltaic applications. Fermi surface computation showed multiband characters. Furthermore, to look for a suitable combination of the charge transport layer, a total of nine HTLs (Cu2O, CuSCN, P3HT, PEDOT:PSS, Spiro-MeOTAD, CuI, V2O5, CBTS, and CFTS) and six ETLs (TiO2, PCBM, ZnO, C60, IGZO, and WS2) are used considering the experimental Eg (2.3 eV). The best power conversion efficiency (PCE) of 13.86% is reported for TiO2 and CFTS in combination with the CsPbBr3 absorber. The effects of operating temperature, series and shunt resistances, Mott-Schottky, capacitance, generation and recombination rates, quantum efficiency, and current-voltage density were also examined. The resulting PV properties were also compared with previously published data. Results reported in this study will pave the way for the development of high-efficiency all-inorganic CsPbBr3-based solar cells in the future.
引用
收藏
页码:6078 / 6098
页数:21
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