The Impact of Interface Defect Density on the Performance of CH3NH3PbI3 Based Solar Cell Using SCAPS-1D
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Keywords

Perovskite solar cells, 2D-MoTe2, electron transport layer, interface defects, SCAPS-1D simulation, power conversion efficiency, fill factor, open-circuit voltage, short-circuit current density.

How to Cite

The Impact of Interface Defect Density on the Performance of CH3NH3PbI3 Based Solar Cell Using SCAPS-1D. (2025). KASU JOURNAL OF MATHEMATICAL SCIENCE (Maths Access), 4(1), 66-73. https://mathsaccess.org.ng/index.php/kjms/article/view/76

Abstract

In this work, Solar Cell Capacitance Simulator-1D (SCAPS-1D) was utilized to study the interface defect densities with varying absorber layer thickness of perovskite solar cells. The planar heterojunction n-i-p structure was defined as 2D-MoTe2/CH3NH3PbI3/Cu2O, and its performance was simulated. Power conversion efficiency > 23% was realized at < 1014 cm−3 defect density at 2D-MoTe2/CH3NH3PbI3 and CH3NH3PbI3/Cu2O interfaces and >1.0 µm thickness of absorber layer. The study was carried out at 300k temperature. These results show constraints on numerical simulation for correlation between defect mechanism and performance.

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