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Room Temperature Processed Double Electron Transport Layers for Efficient Perovskite Solar Cells

机译:室温加工双电子传输层用于高效钙钛矿太阳能电池

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摘要

Zinc Oxide (ZnO) has been regarded as a promising electron transport layer (ETL) in perovskite solar cells (PSCs) owing to its high electron mobility. However, the acid-nonresistance of ZnO could destroy organic-inorganic hybrid halide perovskite such as methylammonium lead triiodide (MAPbI3) in PSCs, resulting in poor power conversion efficiency (PCE). It is demonstrated in this work that Nb2O5/ZnO films were deposited at room temperature with RF magnetron sputtering and were successfully used as double electron transport layers (DETL) in PSCs due to the energy band matching between Nb2O5 and MAPbI3 as well as ZnO. In addition, the insertion of Nb2O5 between ZnO and MAPbI3 facilitated the stability of the perovskite film. A systematic investigation of the ZnO deposition time on the PCE has been carried out. A deposition time of five minutes achieved a ZnO layer in the PSCs with the highest power conversion efficiency of up to 13.8%. This excellent photovoltaic property was caused by the excellent light absorption property of the high-quality perovskite film and a fast electron extraction at the perovskite/DETL interface.
机译:由于其高电子迁移率,氧化锌(ZnO)被认为是在钙钛矿太阳能电池(PSC)中的有前途的电子传输层(ETL)。然而,ZnO的酸 - 非抗性可以在PSC中破坏有机 - 无机杂交卤化物钙钛矿,例如甲基铅三碘化物(MAPBI3),导致功率转换效率不良(PCE)。在该工作中证明了Nb2O5 / ZnO膜在室温下用RF磁控管溅射沉积,并且由于NB2O5和MAPBI3和ZnO之间的能带匹配而成功用作PSC的双电子传输层(Detl)。此外,ZnO和MAPBI3之间的Nb2O5的插入促进了钙钛矿膜的稳定性。已经进行了对PCE上的ZnO沉积时间的系统调查。 PSC中的ZnO层的沉积时间为5分钟,功率转换效率最高高达13.8%。这种优异的光伏性能是由高质量的钙钛矿膜的优异光吸收性能和钙钛矿/ DETL界面处的快速电子提取引起的。

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