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Consecutive Morphology Controlling Operations for Highly Reproducible Mesostructured Perovskite Solar Cells

机译:连续形态控制操作的高度可复制的介观钙钛矿太阳能电池

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Perovskite solar cells have shown high photovoltaic performance but suffer from low reproducibility, which is mainly caused by low uniformity of the active perovskite layer in the devices. The nonuniform perovskites further limit the fabrication of large size solar cells. In this work, we control the morphology of CH3NH3PbI3 on a mesoporous TiO2 substrate by employing consecutive antisolvent dripping and solvent-vapor fumigation during spin coating of the precursor solution. The solvent-vapor treatment is found to enhance the perovskite pore filling and increase the uniformity of CH3NH3PbI3 in the porous scaffold layer but slightly decrease the uniformity of the perovskite capping layer. An additional antisolvent dripping is employed to recover the uniform perovskite capping layer. Such consecutive morphology controlling operations lead to highly uniform perovskite in both porous and capping layers. By using the optimized perovskite deposition procedure, the reproducibility of mesostructured solar cells was greatly improved such that a total of 40 devices showed an average efficiency of 15.3% with a very small standard deviation of 0.32. Moreover, a high efficiency of 14.9% was achieved on a large-size cell with a working area of 1.02 cm(2).
机译:钙钛矿太阳能电池显示出较高的光伏性能,但再现性低,这主要是由于器件中活性钙钛矿层的均匀性低所致。不均匀的钙钛矿进一步限制了大尺寸太阳能电池的制造。在这项工作中,我们通过在前体溶液的旋涂过程中采用连续的反溶剂滴注和溶剂-蒸汽熏蒸来控制中孔TiO2基材上CH3NH3PbI3的形貌。发现溶剂-蒸气处理增强了钙钛矿孔填充并增加了多孔支架层中CH 3 NH 3 PbI 3的均匀性,但稍微降低了钙钛矿覆盖层的均匀性。使用另外的抗溶剂滴落以恢复均匀的钙钛矿覆盖层。这种连续的形态控制操作导致多孔层和覆盖层中的钙钛矿高度均匀。通过使用优化的钙钛矿沉积程序,介观结构的太阳能电池的可重复性得到了极大的提高,从而使总共40个器件的平均效率为15.3%,标准偏差仅为0.32。此外,在工作面积为1.02 cm(2)的大型单元上,可以实现14.9%的高效率。

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