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Oxygen degradation in mesoporous Al2O3/CH3NH3PbI3-xClx perovskite solar cells: kinetics and mechanisms

机译:介孔Al2O3 / CH3NH3PbI3-xClx钙钛矿太阳能电池中的氧降解:动力学和机理

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摘要

The rapid pace of development for hybrid perovskite photovoltaics has recently resulted in promising figures of merit being obtained with regard to device stability. Rather than relying upon expensive barrier materials, realizing market-competitive lifetimes is likely to require the development of intrinsically stable devices, and to this end accelerated aging tests can help identify degradation mechanisms that arise over the long term. Here, oxygen-induced degradation of archetypal perovskite solar cells under operation is observed, even in dry conditions. With prolonged aging, this process ultimately drives decomposition of the perovskite. It is deduced that this is related to charge build-up in the perovskite layer, and it is shown that by efficiently extracting charge this degradation can be mitigated. The results confirm the importance of high charge-extraction efficiency in maximizing the tolerance of perovskite solar cells to oxygen.
机译:混合钙钛矿光伏技术的快速发展近来已导致在器件稳定性方面获得了有希望的品质因数。要实现具有市场竞争力的使用寿命,而不是依靠昂贵的阻隔材料,就需要开发本质上稳定的器件,为此,加速老化测试可以帮助确定长期出现的降解机理。在这里,即使在干燥条件下,在操作下也观察到氧诱导的原型钙钛矿太阳能电池的降解。随着时间的延长,该过程最终导致钙钛矿的分解。推断这与钙钛矿层中电荷的积累有关,并且表明通过有效地提取电荷,可以减轻这种降解。结果证实了高电荷提取效率在最大化钙钛矿太阳能电池对氧气的耐受性中的重要性。

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