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Performance investigation of cesium formamidinium lead mixed halide (FA_(0.83)Cs_(0.17)PbI_(3-x)Br_x) for different iodine and bromine ratios

机译:Performance investigation of cesium formamidinium lead mixed halide (FA_(0.83)Cs_(0.17)PbI_(3-x)Br_x) for different iodine and bromine ratios

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摘要

In recent years, lead mixed halide perovskite materials have been highly efficient in solar cells and other semiconductor technology. Presently, Perovskites solar cells combined with Cesium formamidinium lead mixed halide (FA_(0.83)Cs_(0.17)PbI_(3-x)Br_x) are the most widely discussed subject for third-generation solar cells studied among third-generation solar cells in light of their tunable broad bandgap, strong charge carrier mobility, and high efficiency. The perovskite active layers with the hybrid perovskite composition of FA_(0.83)Cs_(0.17)PbI_(3-x)Br_x can change bandgap by adjusting the I/Br ratio ranging (x = 0.5, 1.0, 1.5, 2.0, 2.5). We have utilized SCAPS-1D to simulate an n-i-p planer heterojunction PSC by changing the I/Br ratio of FA_(0.83)Cs_(0.17)PbI_(3-x)Br_x as an active layer in this paper. It has been demonstrated that when halogen ratios increase, power conversion efficiency (PCE), short-circuit current density (J_(sc)), and fill factor (FF) decrease while open-circuit voltage (V_(oc)) increases. We have discovered that, among all the combinations, FA_(0.83)Cs_(0.17)PbI_(2.5)Br_(0.5) has the highest efficiency of 23.57% after considering perovskite thickness, defect density, series resistance, and shunt resistance. Finally, we can say that FA_(0.83)Cs_(0.17)PbI_(2.5)Br_(0.5) as an absorbing perovskite material may generate a high-efficiency solar cell while also performing the role of the top cell in a perovskite-perovskite tandem arrangement.

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