This paper presents a comparative numerical analysis of eco-friendly chalcogenide perovskite solar cells using three Barium zirconium sulfide derived absorber materials: BaZrS
3
, Ba(Zr
0.95
Ti
0.05
)S
3
and BaZr(S
0.6
Se
0.4
)
3
, with SCAPS-1D. The simulated device structure is FTO/CdS/absorber/PEDOT: PSS/Ir, with PEDOT: PSS used as the hole transport layer due to its matching energy levels and its ability to effectively extract holes. The impact of absorber composition on photovoltaic performance, focusing on bandgap tuning, charge transport and recombination properties, was systematically analyzed. Of the investigated absorber variants, Ti-substituted device Ba(Zr
0.95
Ti
0.05
)S
3
was found to be the most successful one with the highest power conversion efficiency of 25.89% and an open circuit voltage (Voc) of 1.280 V, short circuit current density (Jsc) of 24.59 mA/cm
2
and a fill factor (FF) of 82.22%. This is due to the improved performance enabled by better optoelectronic properties, better band alignment, and reduced carrier recombination resulting from Ti incorporation. The results here imply that compositional design of BaZrS
3
-based absorbers is a promising strategy for improving the performance and stability of lead-free PSCs. The device’s performance was also optimised using a random forest model, accounting for the effects of thickness, temperature, bulk defect density, and interface defect density. This hybrid simulation-ML model effectively enabled predicting the main performance tendencies and optimising the parameters.
A machine‐learning approach is developed to optimize the Rb2CuSbF6‐based perovskite light‐emitting diodes (PeLEDs). Using density functional theory, the structure, electronic, and optical properties of these materials, Rb2CuSbX6 (X = F, Cl, Br) are explored and the properties needed for device modeling are determined....
Mangey Ram Nagar, N. Agrawal, Mohd. Sazid et al.· Advanced Theory and Simulati...· 1 citation
The proposed hybrid framework demonstrates a robust and computationally efficient pathway for designing high-efficiency perovskite solar cells, while highlighting the critical role of MXene-assisted interface engineering in enhancing device performance and defect tolerance.
Sayandeep Biswas, M. Shahnawaz, Pallab Debnath et al.· Optical and quantum electron...· 0 citations
A robust data-driven paradigm for accelerating the development of high-performance, lead-free PSCs is established, and the ZnOS/Cs2AgBi0.75Sb0.25Br6/CFTS configuration achieves the highest power conversion efficiency.
Ihtesham Ibn Malek, Md. Meraj Ali, Imran Hossen et al.· RSC Advances· 0 citations
The promising outcomes from numerical and machine learning approaches will eventually provide feasible directions to fabricate high efficiency CFTS based PV cells in the near future.
Md Anwer Hossain, Shaelseya Dewan Chakma, Sakhawat Hussain· Semiconductor Science and Te...· 0 citations
CdSnP2 and the proposed data-driven SCAPS-ML framework for the accelerated design of high-efficiency multifunctional optoelectronic devices demonstrate the potential of CdSnP2 and the proposed data-driven SCAPS-ML framework.
M. Pappu, Kazi Abrar Shafin, Mainul Hossain et al.· 0 citations
In this study, InPbI3-based perovskite solar cells were numerically analyzed using the SCAPS-1D simulation tool. The device architecture, FTO/WS2/InPbI3/CuI, was modeled and systematically optimized. The investigation focused on the influence of parameters such as the thicknesses of the hole transport layer (HTL), elec...
P. O. Fasanmi, B. Kheswa, H. Al-Dmour· Discover Nano· 0 citations
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