钙钛矿(结构)
光电流
材料科学
串联
光电子学
钙钛矿太阳能电池
太阳能电池
载流子
载流子寿命
带隙
光电导性
超连续谱
超快激光光谱学
异质结
光谱学
分子物理学
化学物理
硅
化学
波长
物理
结晶学
复合材料
量子力学
光子晶体光纤
作者
Anaranya Ghorai,Prashant Kumar,Suhas Mahesh,Yen‐Hung Lin,Henry J. Snaith,K. S. Narayan
摘要
Direct bandgap perovskite and indirect bandgap Si, which form the two active layers in a tandem solar cell configuration, have different optoelectronic properties and thicknesses. The charge-carrier dynamics of the two-terminal perovskite-on-Si tandem solar cell in response to a supercontinuum light pulse is studied using transient photocurrent (TPC) measurements. Spectral dependence of TPC lifetime is observed and can be classified into two distinct timescales based on their respective carrier generation regions. The faster timescale (∼500 ns) corresponding to the spectral window (300–750 nm) represents the top-perovskite sub-cell, while the slower timescale regime of ∼25 μs corresponds to the bottom-Si sub-cell (>700 nm). Additionally, under light-bias conditions, the transient carrier dynamics of the perovskite sub-cell is observed to be coupled with that of the Si sub-cell. A sharp crossover from the fast-response to a slow-response of the device as a function of the light-bias intensity is observed. These results along with a model based on transfer matrix formulation highlight the role of charge-carrier dynamics in accessing higher efficiencies in tandem solar cells. The carrier transit times and lifetimes in addition to their optical properties need to be taken into account for optimizing the performance.
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