Jiang Changyun, Lim Siew Lay, Goh Wei Peng, Wei Feng Xia, Zhang Jie
Institute of Materials Research and Engineering, A*STAR , 3 Research Link, Singapore 117602.
ACS Appl Mater Interfaces. 2015 Nov 11;7(44):24726-32. doi: 10.1021/acsami.5b07446. Epub 2015 Nov 2.
High-performance perovskite solar cells (PSCs) are obtained through optimization of the formation of CH3NH3PbI3 nanocrystals on mesoporous TiO2 film, using a two-step sequential deposition process by first spin-coating a PbI2 film and then submerging it into CH3NH3I solution for perovskite conversion (PbI2 + CH3NH3I → CH3NH3PbI3). It is found that the PbI2 morphology from different film formation process (thermal drying, solvent extraction, and as-deposited) has a profound effect on the CH3NH3PbI3 active layer formation and its nanocrystalline composition. The residual PbI2 in the active layer contributes to substantial photocurrent losses, thus resulting in low and inconsistent PSC performances. The PbI2 film dried by solvent extraction shows enhanced CH3NH3PbI3 conversion as the loosely packed disk-like PbI2 crystals allow better CH3NH3I penetration and reaction in comparison to the multicrystal aggregates that are commonly obtained in the thermally dried PbI2 film. The as-deposited PbI2 wet film, without any further drying, exhibits complete conversion to CH3NH3PbI3 in MAI solution. The resulting PSCs reveal high power conversion efficiency of 15.60% with a batch-to-batch consistency of 14.60 ± 0.55%, whereas a lower efficiency of 13.80% with a poorer consistency of 11.20 ± 3.10% are obtained from the PSCs using thermally dried PbI2 films.
通过优化介孔TiO₂薄膜上CH₃NH₃PbI₃纳米晶体的形成过程,采用两步连续沉积工艺,即先旋涂PbI₂薄膜,然后将其浸入CH₃NH₃I溶液中进行钙钛矿转化(PbI₂ + CH₃NH₃I → CH₃NH₃PbI₃),可获得高性能的钙钛矿太阳能电池(PSC)。研究发现,不同成膜过程(热干燥、溶剂萃取和沉积态)得到的PbI₂形态对CH₃NH₃PbI₃活性层的形成及其纳米晶体组成有深远影响。活性层中残留的PbI₂会导致大量光电流损失,从而导致PSC性能低下且不稳定。与热干燥PbI₂薄膜中常见的多晶聚集体相比,溶剂萃取干燥的PbI₂薄膜显示出增强的CH₃NH₃PbI₃转化,因为松散堆积的盘状PbI₂晶体允许更好的CH₃NH₃I渗透和反应。沉积态的PbI₂湿膜无需进一步干燥,在MAI溶液中可完全转化为CH₃NH₃PbI₃。由此制备的PSC显示出15.60%的高功率转换效率,批次间一致性为14.60±0.55%,而使用热干燥PbI₂薄膜制备的PSC效率较低,为13.80%,一致性较差,为11.20±3.10%。