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Novel Solvent-free Perovskite Deposition in Fabrication of Normal and Inverted Architectures of Perovskite Solar Cells

机译:在钙钛矿太阳能电池的正常和倒置架构制造中的新型溶剂钙钛矿沉积

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We introduced a new approach to deposit perovskite layer with no need for dissolving perovskite precursors. Deposition of Solution-free perovskite (SFP) layer is a key method for deposition of perovskite layer on the hole or electron transport layers that are strongly sensitive to perovskite precursors. Using deposition of SFP layer in the perovskite solar cells would extend possibility of using many electron and hole transport materials in both normal and invert architectures of perovskite solar cells. In the present work, we synthesized crystalline perovskite powder followed by successful deposition on TiO2 and cuprous iodide as the non-sensitve and sensitive charge transport layers to PbI2 and CH3NH3I solution in DMF. The post compressing step enhanced the efficiency of the devices by increasing the interface area between perovskite and charge transport layers. The 9.07% and 7.71% cell efficiencies of the device prepared by SFP layer was achieved in respective normal (using TiO2 as a deposition substrate) and inverted structure (using CuI as deposition substrate) of perovskite solar cell. This method can be efficient in large-scale and low cost fabrication of new generation perovskite solar cells.
机译:我们介绍了一种沉积钙钛矿层的新方法,无需溶解钙钛矿前体。脱离溶液的钙钛矿(SFP)层是用于沉积对孔或电子传输层上的钙钛矿层对钙钛矿前体具有强烈敏感的钙钛矿层的关键方法。在Perovskite太阳能电池中使用SFP层的沉积将延长使用许多电子和空穴传输材料在普罗夫斯基特太阳能电池的正常和反相架构中的可能性。在本作工作中,我们合成了结晶钙钛矿粉末,然后成功地沉积在TiO 2和Chergitive电荷输送层上的DMF中的非敏感和敏感的电荷转移到PBI2和CH 3 NH 3I溶液。后压缩步骤通过增加钙钛矿和电荷传输层之间的接口区域来提高器件的效率。通过SFP层制备的装置的9.07%和7.71%的细胞效率在各自的正常(用TiO 2作为沉积衬底)和垂直结构(使用Cui作为沉积基板)的钙钛矿太阳能电池。这种方法可以高效地具有新一代钙钛矿太阳能电池的大规模和低成本的制造。

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