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通过接触钝化实现高效稳定的溶液处理平面钙钛矿太阳能电池。

Efficient and stable solution-processed planar perovskite solar cells via contact passivation.

机构信息

Department of Electrical and Computer Engineering, University of Toronto, 35 St. George Street, Toronto, Ontario M5S 1A4, Canada.

Department of Materials Science and Engineering, University of Toronto, 184 College Street, Toronto, Ontario M5S 3E4, Canada.

出版信息

Science. 2017 Feb 17;355(6326):722-726. doi: 10.1126/science.aai9081. Epub 2017 Feb 2.

Abstract

Planar perovskite solar cells (PSCs) made entirely via solution processing at low temperatures (<150°C) offer promise for simple manufacturing, compatibility with flexible substrates, and perovskite-based tandem devices. However, these PSCs require an electron-selective layer that performs well with similar processing. We report a contact-passivation strategy using chlorine-capped TiO colloidal nanocrystal film that mitigates interfacial recombination and improves interface binding in low-temperature planar solar cells. We fabricated solar cells with certified efficiencies of 20.1 and 19.5% for active areas of 0.049 and 1.1 square centimeters, respectively, achieved via low-temperature solution processing. Solar cells with efficiency greater than 20% retained 90% (97% after dark recovery) of their initial performance after 500 hours of continuous room-temperature operation at their maximum power point under 1-sun illumination (where 1 sun is defined as the standard illumination at AM1.5, or 1 kilowatt/square meter).

摘要

平面钙钛矿太阳能电池(PSCs)完全通过低温(<150°C)下的溶液处理制备,具有简单制造、与柔性衬底兼容以及基于钙钛矿的串联器件的应用前景。然而,这些 PSCs 需要一种电子选择性层,该选择性层在类似的处理条件下具有良好的性能。我们报告了一种使用氯封端 TiO 胶体纳米晶薄膜的接触钝化策略,该策略可以减轻界面复合并改善低温平面太阳能电池中的界面结合。我们通过低温溶液处理制备了有效面积分别为 0.049 和 1.1 平方厘米的太阳能电池,其认证效率分别为 20.1%和 19.5%。效率大于 20%的太阳能电池在 1 个太阳光照(定义为 AM1.5 标准光照,或 1 千瓦/平方米)下,在最大功率点下连续运行 500 小时后,其初始性能保留了 90%(暗恢复后为 97%)。

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