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Interfacial Contact Passivation for Efficient and Stable Cesium-Formamidinium Double-Cation Lead Halide Perovskite Solar Cells

机译:高效稳定的铯-甲ami鎓双阳离子卤化钙钛矿型太阳能电池的界面接触钝化

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摘要

Perovskite solar cells (PSCs) have achieved extremely high power conversion efficiencies (PCEs) of over 25%, but practical application still requires further improvement in the long-term stability of the device. Herein, we present an interfacial contact passivation strategy to reduce the interfacial defects and extraction losses between the hole transporting layer and perovskite. The existence of PbS promotes the crystallization of perovskite, passivates the interface and grain boundary defects, and reduces the nonradiation recombination, thereby leading to a champion PCE of 21.07% with reduced hysteresis, which is one of the best results for the methylammonium (MA)-free, cesium formamidinium double-cation lead-based PSCs. Moreover, the unencapsulated device retains more than 93% and 82% of its original efficiencies after 1 year's storage under ambient conditions and thermal aging at 85°C for 1,000 h in a nitrogen atmosphere, likely due to the usage of MA-free perovskite and the enhanced surface hydrophobicity.
机译:钙钛矿太阳能电池(PSC)的功率转换效率(PCE)达到25%以上,但实际应用仍需要进一步改善设备的长期稳定性。在本文中,我们提出了一种界面接触钝化策略,以减少空穴传输层和钙钛矿之间的界面缺陷和提取损失。 PbS的存在促进钙钛矿的结晶,钝化界面和晶界缺陷,并减少非辐射复合,从而导致21.07%的冠军PCE和降低的磁滞,这是甲基铵(MA)的最佳结果之一无铯铯form双阳离子铅基PSC。此外,未封装的设备在环境条件下存储1年以及在氮气氛下于85°C在85°C的温度下热老化1,000小时后,仍能保持其原始效率的93%和82%以上,这可能是由于使用了不含MA的钙钛矿和增强的表面疏水性。

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