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Optimized organometal halide perovskite solar cell fabrication through control of nanoparticle crystal patterning

机译:通过控制纳米颗粒晶体图案优化有机金属卤化物钙钛矿太阳能电池制造

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摘要

The addition of Hydrogen Iodide to organometal halide perovskite precursor solution at 1% by volume leads to a significant enhancement in power conversion efficiency (PCE) in inverted solar cell devices, increasing from 7.7% to 11.9% and 6.1% to 10.0% in spin-cast and spray-cast devices respectively. We directly attribute this improved device performance to increased thin-film surface coverage coupled with higher optical density. X-ray diffraction studies also reveal that the HI additive facilitates full conversion of the precursor material to the crystalline perovskite phase. From solution studies, we relate these changes in device performance to the presence and distribution of precursor aggregates that effectively pattern the formation of perovskite crystals during film formation.
机译:将碘化氢以1体积%的比例添加到有机金属卤化物钙钛矿前体溶液中,可显着提高倒置太阳能电池器件的功率转换效率(PCE),自旋-旋转效率分别从7.7%增加到11.9%和6.1%增加到10.0%铸造设备和喷铸设备。我们将这种改进的设备性能直接归因于增加的薄膜表面覆盖率以及更高的光密度。 X射线衍射研究还表明,HI添加剂有助于将前体材料完全转化为钙钛矿相。从解决方案研究中,我们将器件性能的这些变化与前驱体聚集体的存在和分布相关联,这些前驱体聚集体在膜形成过程中有效地图案化了钙钛矿晶体的形成。

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