甲脒
材料科学
钙钛矿(结构)
卤化物
铯
碘化物
热稳定性
溴化物
相(物质)
化学工程
无机化学
有机化学
化学
工程类
作者
Minhuan Wang,Shaun Tan,Yepin Zhao,Pengchen Zhu,Yanfeng Yin,Yulin Feng,Tianyi Huang,Jingjing Xue,Rui Wang,Gill Sang Han,Hyun Suk Jung,Jiming Bian,Jin‐Wook Lee,Yang Yang
标识
DOI:10.1002/adfm.202007520
摘要
Abstract The vast majority of high‐performance perovskite solar cells (PSCs) are based on multi‐cation mixed‐anion compositions incorporating methylammonium (MA) and bromide (Br). Nevertheless, the thermal instability of MA and the tendency of mixed halide compositions to phase segregate limit the long‐term stability of PSCs. However, reports of MA‐free and/or Br‐free compositions are rare in the community since their performance is generally inferior. Here, a strategy is presented to achieve highly efficient and stable PSCs that are altogether cesium (Cs)‐free, MA‐free and Br‐free. An antisolvent quenching process is used to in‐situ deposit a polymeric interlayer to promote the growth of phase‐pure formamidinium lead tri‐iodide perovskite crystals with reduced defect density and to assist in photo‐excited charge extraction. The PSCs developed are among the best‐performing reported for such compositions. Moreover, the PSCs show superior stability under continuous exposure to both illumination and 85 °C heat.
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