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A polymer scaffold for self-healing perovskite solar cells

机译:用于钙钛矿太阳能电池自修复的聚合物支架

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摘要

Advancing of the lead halide perovskite solar cells towards photovoltaic market demands large-scale devices of high-power conversion efficiency, high reproducibility and stability via low-cost fabrication technology, and in particular resistance to humid environment for long-time operation. Here we achieve uniform perovskite film based on a novel polymer-scaffold architecture via a mild-temperature process. These solar cells exhibit efficiency of up to ∼16% with small variation. The unencapsulated devices retain high output for up to 300 h in highly humid environment (70% relative humidity). Moreover, they show strong humidity resistant and self-healing behaviour, recovering rapidly after removing from water vapour. Not only the film can self-heal in this case, but the corresponding devices can present power conversion efficiency recovery after the water vapour is removed. Our work demonstrates the value of cheap, long chain and hygroscopic polymer scaffold in perovskite solar cells towards commercialization.
机译:卤化钙钛矿太阳能电池向光伏市场的发展需要通过低成本制造技术实现高功率转换效率,高可重复性和稳定性的大型设备,特别是对于长时间运行的潮湿环境具有抵抗力。在这里,我们通过温和的工艺获得了一种基于新型聚合物支架结构的均匀钙钛矿薄膜。这些太阳能电池具有很小的变化,效率高达〜16%。未封装的器件在高度潮湿的环境(相对湿度为70%)中可保持高达300 h的高输出功率。此外,它们具有很强的防潮性和自愈性,从水蒸气中移出后可迅速恢复。在这种情况下,不仅薄膜可以自愈,而且在除去水蒸气之后,相应的装置也可以呈现出功率转换效率的恢复。我们的工作证明了钙钛矿型太阳能电池中廉价,长链和吸湿性聚合物支架对商业化的价值。

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