SCAPS-1D Simulation for Device Optimization to Improve Efficiency in Lead-Free CsSnI3 Perovskite Solar Cells

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초록

In this study, a novel systematic analysis was conducted to explore the impact of various parameters, including acceptor density (N-A), individual layer thickness, defect density, interface defect density, and the metal electrode work function, on efficiency within the FTO/ZnO/CsSnI3/NiOx/Au perovskite solar cell structure through the SCAPS-1D (Solar Cell Capacitance Simulator in 1 Dimension) simulation. ZnO served as the electron transport layer (ETL), CsSnI3 as the perovskite absorption layer (PAL), and NiOx as the hole transport layer (HTL), all contributing to the optimization of device performance. To achieve the optimal power conversion efficiency (PCE), we determined the ideal PAL acceptor density (N-A) to be 2 x 10(19) cm(-3) and the optimal thicknesses to be 20 nm for the ETL (ZnO), 700 nm for the PAL (CsSnI3), and 10 nm for the HTL (NiOx), with the metal electrode remaining as Au. As a result of the optimization process, efficiency increased from 11.89% to 23.84%. These results are expected to contribute to the performance enhancement of eco-friendly, lead-free inorganic hybrid solar cells with Sn-based perovskite as the PAL.

키워드

perovskite; photovoltaic solar cell; Pb-free; CsSnI3; SCAPS; CHARGE-TRANSPORT; DEFECT DENSITY; PERFORMANCE; THICKNESS; CONDUCTIVITY; TEMPERATURE; ABSORBER; OXIDE; ZNO
제목
SCAPS-1D Simulation for Device Optimization to Improve Efficiency in Lead-Free CsSnI3 Perovskite Solar Cells
저자
Park, Hyun-Jae; Son, Hyojung; Jeong, Byoung-Seong
DOI
10.3390/inorganics12040123
발행일
2024-04
유형
Article
저널명
INORGANICS
권
12
호
4