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Recent advances in defect passivation of perovskite active layer via additive engineering: a review

机译:通过添加工程临床缺陷钝化钝化层的最新进展:综述

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The performance and stability of perovskite solar cells (PSCs) are mainly affected by various defects inside the perovskite active layer and the corresponding electron/hole interfaces of transport layers. Much progress has been made in the development of perovskite layer passivation strategies, contributing to the efficient performance of PSCs with improved ambient environment stability. This paper reviews additive engineering techniques for the passivation of the perovskite active layer that have the aim of improving perovskite crystallization, reducing carrier recombination, and improving device stability. Passivation of the active layer by various additives can improve the performance of PSCs by reducing trap states and enhancing moisture stability by reducing the grain boundaries. Optimizing the ratio of PbI2 in the perovskite precursor has been discovered to be effective in passivating trap states at the grain boundaries and on the surface of the film. Non-radiative recombination trap centers inside the active layer can be passivated through the incorporation of additives such as organic surfactants, elemental iodine, and metal compounds or nanoparticles. This technique has also played a part in improving energy band alignment between the perovskite layer and the respective electron/hole transport layers. The present work covers most of the published reports on the additive engineering approach. Details of precursor preparation, the effects on the properties of the perovskite layer, and the effects on device efficiency, device hysteresis and device stability are presented.
机译:钙钛矿太阳能电池(的PSCs)的性能和稳定性主要受钙钛矿有源层内的各种缺陷和传输层的相应的电子/空穴的接口。极大地促进了钙钛矿层钝化策略有了长足的发展,有利于改善与周围环境的稳定性物业服务公司的高效的性能。本文回顾添加剂工程技术用于具有改善的钙钛矿结晶,减少载流子复合,并提高装置的稳定性的目的钙钛矿有源层的钝化。通过各种添加剂的活性层的钝化可以提高省电类别的通过减少陷阱态,并通过降低晶粒边界增强水分稳定性的性能。优化碘化铅的钙钛矿的前体的比率已经发现可有效地在晶界和膜的表面上的钝化陷阱态。活性层内的非辐射复合中心的陷阱可通过添加剂的掺入来钝化,例如有机表面活性剂,元素碘,和金属化合物或纳米颗粒。这种技术也起到改善钙钛矿层和相应的电子/空穴传输层之间的能带排列的一部分。目前的工作涵盖了大部分对添加剂的工程方法发表的报告。前体的制备细节,在钙钛矿层的性能,并在器件效率,设备的滞后和器件稳定性的影响的影响被呈现。

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