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Organic-cation-mixed (FA,MA)PbI_3 through sequential vapor growth for planar perovskite solar cells

机译:平面钙钛矿型太阳能电池通过顺序气相生长得到的有机阳离子混合(FA,MA)PbI_3

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摘要

A sequential vapor-processing route can reproducibly provide uniform and densely packed perovskite layers. Herein, we introduce organic-cation-mixed (FA,MA)PbI3 thin films formed by a sequential vapor process, based on the vacuum evaporation of PbCl2 and following a chemical reaction with mixture vapor of FAT and MAI. The perovskite layers were prepared with different vaporization ratios of FAI and MAI, and organic-cation mixing inside the perovskite structure was verified by the gradual shift of the optical bandgap and lattice constant. Furthermore, all the perovskite layers fabricated by the sequential vapor process exhibited a dense, uniform morphology over the entire substrate area. The planar n-i-p perovskite solar cells were fabricated using TiO2 and spiro-OMeTAD charge-transporting layers. The optimized cell exhibited a maximum efficiency of 15.8% with suppressed hysteresis.
机译:顺序的蒸汽处理路线可以可再现地提供均匀且密堆积的钙钛矿层。在此,我们基于PbCl2的真空蒸发并与FAT和MAI的混合蒸气进行化学反应,介绍了通过连续蒸气法形成的有机阳离子混合(FA,MA)PbI3薄膜。用不同的FAI和MAI汽化比制备钙钛矿层,并通过光学带隙的逐渐移动和晶格常数验证了钙钛矿结构内部的有机阳离子混合。此外,通过顺序气相法制造的所有钙钛矿层在整个基底区域上均表现出致密,均匀的形态。使用TiO2和螺-OMeTAD电荷传输层制造了平面n-i-p钙钛矿太阳能电池。优化的电池在抑制磁滞的情况下显示出15.8%的最大效率。

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