首页> 外文期刊>Journal of physical chemistry letters >Unravelling the Material Composition Effects on the Gamma Ray Stability of Lead Halide Perovskite Solar Cells: MAPbI(3) Breaks the Records
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Unravelling the Material Composition Effects on the Gamma Ray Stability of Lead Halide Perovskite Solar Cells: MAPbI(3) Breaks the Records

机译:解开材料成分对铅卤化铅钙钛矿太阳能电池的γ射线稳定性的影响:Mapbi(3)打破了记录

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In this work, we report a comparative study of the gamma ray stability of perovskite solar cells based on a series of perovskite absorbers including MAPbI(3) (MA = methylammonium), MAPbBr(3), Cs(0.15)FA(0.85)PbI(3) (FA = formamidinim), Cs(0.1)MA(0.15)FA(0.75)PbI(3), CsPbI3, and CsPbBr3. We reveal that the composition of the perovskite material strongly affects the radiation stability of the solar cells. In particular, solar cells based on the MAPbI(3) were found to be the most resistant to gamma rays since this perovskite undergoes rapid self-healing due to the special gas-phase chemistry analyzed with ab initio calculations. The fact that the solar cells based on MAPbI(3) can withstand a 1000 kRad gamma ray dose without any noticeable degradation of the photovoltaic properties is particularly exciting and shifts the paradigm of research in this field toward designing more dynamic rather than intrinsically robust (e.g., inorganic) materials.
机译:在这项工作中,我们报告了基于包括MAPBI(3)(MA =甲基铵),MAPBBBR(3),CS(0.15)FA(0.85)PBI(0.85)PBI(0.85)PBI(0.85)PBI(0.85)PBI(0.85) (3)(Fa =甲脒尼鎓),Cs(0.1)MA(0.15)FA(0.75)PBI(3),CSPBI3和CSPBBR3。 我们揭示了钙钛矿材料的组成强烈影响太阳能电池的辐射稳定性。 特别地,发现基于MAPBI(3)的太阳能电池是对γ射线最抗性的,因为由于随着AB Initio计算分析的特殊气相化学,这种钙钛矿经历了快速的自我愈合。 基于MAPBI(3)的太阳能电池可以承受1000 kradγ射线剂量而没有任何明显的光伏性能的劣化特别令人兴奋,并且将该领域的研究范式转移朝向设计更多的动态而不是本质上稳健(例如 ,无机)材料。

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