Please use this identifier to cite or link to this item:
http://hdl.handle.net/10174/42514
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| Title: | Optimization and Numerical Simulation of Cs₂AgSbBr₆-Based Lead-Free Perovskite Solar Cells Using SCAPS-1D |
| Authors: | Haque, Md Ekramul Ahmed, Md Tofael Tlemçani, Mouhaydine |
| Keywords: | Lead-free perovskite Cs2AgSbBr6 SCAPS-1D simulation Double perovskite solar cell transport layer |
| Issue Date: | 12-Jun-2026 |
| Publisher: | AMPSECA 2026 |
| Abstract: | Extensive research into lead-free alternatives has been prompted by the toxicological and environmental issues around lead-based perovskite solar cells. The halide double perovskite Cs₂AgSbBr₄ has become a potential absorber material because of its non-toxic composition, good optoelectronic capabilities, and chemical durability [1].
Using the SCAPS-1D platform [2] and the device architecture FTO/ETL/Cs₂AgSbBr₄/HTL/Au, this work provides a thorough numerical modeling and optimization of Cs₂AgSbBr₆-based solar cells. To determine the ideal charge transport configuration, electron transport layers (TiO₂, SnO₂, ZnO, PCBM) and hole transport layers (Spiro-OMeTAD, CuSCN, NiO, MoO₃) are systematically screened to identify the optimal charge transport arrangement. Crucial elements influencing device performance such as absorber layer thickness, defect density, and doping concentration are investigated through parametric optimization. The results reveal that the optimal ETL/HTL combination significantly enhances power conversion efficiency, offering a viable pathway toward high-performance, environmentally friendly perovskite solar cells. |
| URI: | https://ampseca2026.sciencesconf.org/ http://hdl.handle.net/10174/42514 |
| Type: | lecture |
| Appears in Collections: | ICT - Comunicações - Em Congressos Científicos Internacionais
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