首页> 外文期刊>Journal of physical chemistry letters >Strong Photocurrent Amplification in Perovskite Solar Cells with a Porous TiO2 Blocking Layer under Reverse Bias
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Strong Photocurrent Amplification in Perovskite Solar Cells with a Porous TiO2 Blocking Layer under Reverse Bias

机译:反向偏置下具有多孔TiO2阻挡层的钙钛矿太阳能电池中的强光电流放大

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摘要

We investigate two different types of TiO2 blocking layer (BL) deposition techniques commonly used in solid-state methylammonium lead triiodide perovskite (MaPbI3)-based solar cells. Although these BLs lead to similar photovoltaic device performance, their structure and blocking capability is actually very different. In one case, the “blocking” layer is porous, allowing an intimate contact of the perovskite with the fluorine-doped tin-dioxide (FTO)-covered glass substrate serving as transparent electron collector. This interface between the perovskite and the FTO shows rectifying behavior. Reverse biasing of such a solar cell allows the determination of the valence-band position of the MaPbI3 and the theoretical maximum attainable photovoltage. We show that under reverse bias strong photocurrent amplification is observed, permitting the cell to work as a high-gain photodetector at low voltage. Without BL, the solar-cell performance decreased, but the photocurrent amplification increased. At 1 V reverse bias, the photocurrent amplification is above a factor of 10 for AM 1.5 solar light and over 100 for lower light intensities.
机译:我们研究了两种不同类型的TiO2阻挡层(BL)沉积技术,这些技术通常用于基于固态甲基铵三碘化钙钛矿(MaPbI3)的太阳能电池中。尽管这些BL导致类似的光伏设备性能,但它们的结构和阻挡能力实际上却大不相同。在一种情况下,“阻挡”层是多孔的,从而允许钙钛矿与覆盖有氟掺杂的二氧化锡(FTO)的玻璃基板紧密接触,该玻璃基板用作透明电子收集器。钙钛矿和FTO之间的界面显示出矫正行为。这种太阳能电池的反向偏置可以确定MaPbI3的价带位置和理论上可获得的最大光电压。我们表明,在反向偏置下观察到强光电流放大,从而允许电池在低电压下作为高增益光电探测器工作。没有BL,太阳能电池性能下降,但是光电流放大率增加。在1 V反向偏压下,对于AM 1.5太阳光,光电流放大倍数大于10,而对于较低的光强度,光电流放大倍数大于100。

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