M. Khalid Hossain
0000-0003-4595-6367
Bangladesh Atomic Energy Commission
31 papers found
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Perovskite Solar Cells with Dual Light Absorber Layers for Performance Efficiency Exceeding 30%
Halide Composition Engineered a Non-Toxic Perovskite–Silicon Tandem Solar Cell with 30.7% Conversion Efficiency
Achieving above 24% efficiency with non-toxic CsSnI3 perovskite solar cells by harnessing the potential of the absorber and charge transport layers
Designing an efficient lead-free perovskite solar cell with green-synthesized CuCrO2 and CeO2 as carrier transport materials
Boosting efficiency above 28% using effective charge transport layer with Sr3SbI3 based novel inorganic perovskite
Harnessing the potential of CsPbBr3-based perovskite solar cells using efficient charge transport materials and global optimization
A comprehensive study of the optimization and comparison of cesium halide perovskite solar cells using ZnO and Cu2FeSnS4 as charge transport layers
Comparative study of distinct halide composites for highly efficient perovskite solar cells using a SCAPS-1D simulator
Performance enhancement using an embedded nano-pyramid in a perovskite solar cell with TaTm as a hole transport layer
Efficiency enhancement of perovskite solar cell devices utilizing MXene and TiO2 as an electron transport layer
Combined DFT, SCAPS-1D, and wxAMPS frameworks for design optimization of efficient Cs2BiAgI6-based perovskite solar cells with different charge transport layers
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