- Research Article
- 10.1088/1402-4896/ae5772
SCAPS-1D simulation of high-performance NaZn0.7Ag0.3Br3 double perovskite solar cells with optimized transport layers
- Apr 03, 2026
- Physica Scripta
- Md Hasnain + 4 more +4
Abstract This study presents a comprehensive SCAPS-1D simulation of a lead-free double-perovskite solar cell based on 
NaZn₀.₇Ag₀.₃Br₃ as the absorber layer. Various electron transport layers (CdZnS, MZO, Nb₂O₅, and SnS₂) were 
systematically evaluated to optimize device performance. Among the investigated configurations, the 
FTO/SnS₂/NaZn₀.₇Ag₀.₃Br₃/CuAlO₂/Pt structure exhibited superior photovoltaic characteristics due to improved 
band alignment and reduced recombination losses. Under ideal radiative-loss-free conditions (B = 0), a maximum 
power conversion efficiency (PCE) of 30.56% was obtained. However, after incorporating a realistic radiative 
recombination coefficient (B = 2.3 × 10⁻⁹ cm³/s), the optimized device achieved a PCE of 29.92%, with minimal 
variation in short-circuit current density and a moderate reduction in open-circuit voltage. The results confirm that 
the proposed lead-free perovskite configuration maintains strong photovoltaic performance under physically 
realistic recombination conditions, highlighting its potential for high-efficiency and environmentally benign solar 
cell applications.
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