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Monovalent Cation Doping of CH3NH3PbI3 for Efficient Perovskite Solar Cells
Published on: March 19, 2017
Anharmonicity-Driven Modulation of Carrier Lifetime and Mobility in BF4-Doped All-Inorganic CsPbX3 (X = I, Br)
Kai-Feng Wang1, Xuan-Wang Tan1, Xi-Meng Tang1
1Institute of Quantum Physics, Hunan Key Laboratory of Nanophotonics and Devices, Hunan Key Laboratory of Super-Microstructure and Ultrafast Process, School of Physics, Central South University, Changsha 410083, China.
Abstract:
Pseudohalide (such as BF4-) doping has emerged as a crucial strategy for enhancing the photovoltaic performance of all-inorganic halide perovskite CsPbX3 (X = I, Br) solar cells. Here, we employ density functional theory and ab initio nonadiabatic molecular dynamics to elucidate how BF4- doping modulates carrier dynamics through anharmonicity-driven mechanisms. We demonstrate that BF4- incorporation substantially enhances intrinsic anharmonicity (∼4.5-fold in CsPbI3, >10-fold in CsPbBr3), amplifying dynamic disorder that induces charge localization and reduces electron-phonon coupling. This mechanism extends nonradiative recombination lifetimes by 131% in CsPbI3 and 47% in CsPbBr3. Critically, we reveal a nonmonotonic relationship between anharmonicity and carrier transport: whereas moderate anharmonicity enhancement improves electron mobility by 35% in CsPbI3, excessive enhancement induces mobility degradation in CsPbBr3 due to charge overlocalization. Our work establishes fundamental design principles connecting lattice anharmonicity to carrier lifetime and mobility, providing atomic-level insights for optimizing pseudohalide-doped perovskite optoelectronics.
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