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首页> 外文期刊>Journal of physical chemistry letters >Enhanced Dissociation of Hot Excitons with an Applied Electric Field under Low-Power Photoexcitation in Two-Dimensional Perovskite Quantum Wells
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Enhanced Dissociation of Hot Excitons with an Applied Electric Field under Low-Power Photoexcitation in Two-Dimensional Perovskite Quantum Wells

机译:在二维Perovskite量子阱的低功率光透镜下将热激子的解离热激子与施加电场的解离

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摘要

The dependence of photoluminescence (PL) on excitation power and the effect of an external electric field have been studied for a two-dimensional (2D) perovskite (C4H9NH3)(2)PbI4 thin-film sample. The efficiency of dissociation of hot excitons to produce free carriers was enhanced with a small excitation power because the relaxation of hot excitons to cold emissive excitons was slow, indicating that the thermal energies of hot carriers can be utilized in solar cells under weak photoirradiation. The dissociation was notably enhanced with an applied electric field, resulting in efficient field-induced quenching of the PL. The present results shed light on an application of 2D perovskite materials to photovoltaic (PV) devices with dim radiation, e.g., for indoor PV applications; the concept of electric field-assisted solar cells might be applicable to next-generation solar cells.
机译:研究了光致发光(PL)对激发功率的依赖性以及外部电场的效果,用于二维(2D)钙钛矿(C4H9NH3)(2)PBI4薄膜样品。 热激子解离的效率以产生游离载体的效率,具有小的激励力,因为热激子对冷发射激子的弛豫是缓慢的,表明热载体的热能可以在太阳能电池下在弱光镜下使用。 用施加的电场显着增强了解离,从而产生了PL的有效场诱导的淬火。 目前的结果揭示了2D钙钛矿材料在具有暗辐射的光伏(PV)器件的应用中,例如,用于室内PV应用; 电场辅助太阳能电池的概念可能适用于下一代太阳能电池。

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