论文标题
使用电吸附探测的混合钙钛矿太阳能电池中的内部电场筛选动力学
The dynamics of internal electric field screening in hybrid perovskite solar cells probed using electroabsorption
论文作者
论文摘要
由金属卤化物钙钛矿太阳能电池中电荷分布产生的电场对于理解这些设备显示的许多奇怪而奇妙的光电特性至关重要。移动离子缺陷被认为会在应用外部偏置时占据孔隙素半导体内部电场的界面上积累,但是需要工具才能直接在此过程中直接探测电场的动力学。在这里,我们表明,电吸附测量允许在活动层中的电场作为频率或时间的函数跟踪。电吸附信号的大小与钙钛矿层中电场的强度相对应,用于外部施加的低频电压或在电压步骤后长时间降低。我们的观察结果与漂移扩散模拟,阻抗光谱和瞬时光电流测量相一致。它们指出,取决于设备层间材料,钙钛矿组成,主要充电缺陷和照明条件,范围从10 ms到100 s的电荷筛选/重新分布。该方法可以在典型的太阳能电池结构上执行,并具有成为优化混合钙钛矿设备的常规表征工具的潜力。
Electric fields arising from the distribution of charge in metal halide perovskite solar cells are critical for understanding the many weird and wonderful optoelectronic properties displayed by these devices. Mobile ionic defects are thought to accumulate at interfaces to screen electric fields within the bulk of the perovskite semiconductor on application of external bias, but tools are needed to directly probe the dynamics of the electric field in this process. Here we show that electroabsorption measurements allow the electric field within the active layer to be tracked as a function of frequency or time. The magnitude of the electroabsorption signal, corresponding to the strength of the electric field in the perovskite layer, falls off for externally applied low frequency voltages or at long times following voltage steps. Our observations are consistent with drift-diffusion simulations, impedance spectroscopy, and transient photocurrent measurements. They indicate charge screening/redistribution on time-scales ranging from 10 ms to 100 s depending on the device interlayer material, perovskite composition, dominant charged defect, and illumination conditions. The method can be performed on typical solar cell structures and has potential to become a routine characterization tool for optimizing hybrid perovskite devices.