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Compositional Engineering of FAPbI3 Perovskite Added MACl with MAPbBr3 or FAPbBr3

机译:FAPBI3 PEROVSKITE的组成工程用MAPBBR3或FAPBBR3添加了MACL

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Many attempts have been made to stabilize α-phase formamidinium lead iodide (α-FAPbI3) using mixed cations or anions with MA , FA , Br? and I?. A representative method is to stably produce α-FAPbI3 by adding methylammonium lead (MAPbBr3) to the light absorption layer of a perovskite solar cell and using methylammonium chloride (MACl) as an additive. However, in the perovskite containing MA and Br?, the current density is lowered due to an unwanted increase in the bandgap; phase separation occurs due to the mixing of halides, and thermal stability is lowered. Therefore, in this study, in order to minimize the decrease in the composition ratio of FAPbI3 and to reduce MA , the addition amount of MACl was first optimized. Thereafter, a new attempt was made to fabricate FAPbI3 perovskite by using formamidinium lead bromide (FAPbBr3) and MACl together as phase stabilizers instead of MAPbBr3. As for the FAPbI3-MAPbBr3 solar cell, the (FAPbI3)0.93(MAPbBr3)0.07 device showed the highest efficiency. On the other hand, in the case of the FAPbI3-FAPbBr3 solar cell, the (FAPbI3)0.99(FAPbBr3)0.01 solar cell with a very small FAPbBr3 composition ratio showed the highest efficiency with fast photovoltaic performance improvement and high crystallinity. In addition, the FAPbI3-FAPbBr3 solar cell showed a higher performance than the FAPbI3-MAPbBr3 solar cell, suggesting that FAPbBr3 can sufficiently replace MAPbBr3.
机译:已经使用混合阳离子或阴离子稳定α-相甲脒铅碘化物(α-FAPBI3)的许多尝试使用混合阳离子或带有MA,FA,BR?和我?。代表性方法是通过将甲基铅(MAPBBR3)加入Perovskite太阳能电池的光吸收层并使用甲基氯化铵(MAC1)作为添加剂来稳定地生产α-FAPBI3。然而,在含有MA和BR的钙钛矿中,由于带隙的不需要的增加,电流密度降低;由于卤化物的混合而发生相分离,并且热稳定性降低。因此,在本研究中,为了使FAPBI3的组成比和减少MA的减少最小化,首先优化MAC1的添加量。此后,通过使用甲脒铅溴(FAPBBR3)和MAC1作为相稳定剂而不是MAPBBR3来制备新的尝试。至于FAPBI3-MAPBBR3太阳能电池,(FAPBI3)0.93(MAPBBR3)0.07器件显示出最高效率。另一方面,在FAPBI3-FAPBBR3太阳能电池的情况下,(FAPBI3)0.99(FAPBBR3)0.01太阳能电池具有非常小的FAPBBR3成分比,显示出具有快速光伏性能提高和高结晶度的最高效率。此外,FAPBI3-FAPBBR3太阳能电池表现出比FAPBI3-MAPBBBR3太阳能电池更高的性能,这表明FAPBBR3可以充分替换MAPBBR3。

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