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Impacts of carrier trapping and ion migration on charge transport of perovskite solar cells with TiOx electron transport layer

机译:载体捕获和离子迁移对具有TiOx电子传输层的钙钛矿太阳能电池电荷运输的影响

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The ion migration in perovskite materials has been extensively studied by researchers, but the charge dynamic distribution caused by ion migration and carrier trapping is partly unclear. To investigate the impacts of ion migration and defect induced carrier trapping on the carrier transport and the carrier collection, we measured the evolution of the photocurrent response in microseconds, milliseconds and seconds for the perovskite solar cells pretreated at different biases. Our results reveal that the photocurrent of the solar cells pretreated at negative bias decreases with time and achieves its minimum at several milliseconds, then rises and achieves its maximum at tens of seconds. For the device pretreated at positive bias beyond built-in potential, the time to reach maximum photocurrent is much shorter than that of the solar cell pretreated at negative bias. The transient photocurrent responses to the sequence of single-light-pulses also show that there is obvious carrier trapping in a positive bias treated device, which indicates that defect induced carrier trapping is the critical factor for the perovskite solar cells with an n-TiO _( x ) electron transport layer. In order to improve the performance of the perovskite solar cells with nano-TiO _( x ) ETL, it is very necessary to significantly reduce defects. Our results also demonstrate that cation accumulation at the interface between the perovskite active layer and ETL can enhance the device performance to a certain extent.
机译:研究人员已经广泛研究了钙钛矿材料的离子迁移,但离子迁移和载体捕获引起的电荷动态分布部分尚不清楚。为了研究离子迁移和缺陷诱导的载体捕获对载体传输和载体收集的影响,我们在不同偏差下预处理的钙钛矿太阳能电池的微秒,毫秒和秒中的光电流响应的演变。我们的结果表明,在负偏压下预处理的太阳能电池的光电流随时间减少,并在几毫秒下实现其最小值,然后在几十秒内升高并实现其最大值。对于在阳性偏置的正偏压下预处理的装置,达到最大光电流的时间远远大于在负偏压下预处理的太阳能电池的时间。对单光脉冲序列的瞬态光电流响应还表明,在正偏置处理装置中存在明显的载体捕获,这表明缺陷诱导的载体捕获是具有N-TIO _的钙钛矿太阳能电池的关键因素_ (x)电子传输层。为了提高钙钛矿太阳能电池与纳米TiO _(X)ETL的性能,非常有必要显着减少缺陷。我们的结果还表明,Perovskite有源层和ETL之间接口的阳离子积累可以在一定程度上增强设备性能。

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