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An Interlayer with Strong Pb-Cl Bond Delivers Ultraviolet-Filter-Free Efficient and Photostable Perovskite Solar Cells

机译:具有强Pb-Cl键的中间层可提供无紫外线过滤高效且光稳定的钙钛矿太阳能电池

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摘要

The inorganic metal oxides (IMOs), including titanium dioxide (TiO ) and tin dioxide (SnO ), inevitably induce decomposition of perovskite under UV illumination owing to their photocatalytic activity, and the use of a UV filter will add extra cost and reduce the effective power output. Here, we first reveal that the weak Pb-I bond in I-based perovskite is prone to breakage under UV photocatalysis, leading to serious degradation of the SnO /perovskite interface. We introduced a chlorine-rich mixed-halide perovskite interlayer (ClMPI), which possesses an excellent tolerance to photocatalysis owing to the strong Pb-Cl bond, between the SnO and I-based perovskite. The ClMPI-based device achieves an enhanced efficiency of up to 21.01% (certified 20.17%). Most importantly, the resultant devices can maintain >94% of their initial performance after 180 h under outdoor solar irradiation, >80% after 500 h under UV irradiation, and 500 h under continuous full spectrum illumination at their maximum power points.
机译:无机金属氧化物(IMOs),包括二氧化钛(TiO)和二氧化锡(SnO),由于其光催化活性,在紫外线照射下不可避免地引起钙钛矿分解,使用紫外线滤光片会增加成本,并降低其有效效率。功率输出。在这里,我们首先揭示了基于I的钙钛矿中的弱Pb-I键在紫外光催化下容易断裂,从而导致SnO /钙钛矿界面的严重降解。我们引入了富含氯的混合卤化物钙钛矿中间层(ClMPI),由于在SnO和I基钙钛矿之间具有强大的Pb-Cl键,它具有出色的光催化耐受性。基于ClMPI的设备可实现高达21.01%(经认证的20.17%)的增强效率。最重要的是,在室外太阳照射下180h后,所得器件在其最大功率点下可以保持> 94%的初始性能,在紫外线照射下500h后可以保持> 80%,在连续全光谱照射下可以保持500h。

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