Stoichiometry dependent phase evolution of co-evaporated formamidinium and cesium lead halide thin films

被引:2
|
作者
Heinze, Karl L. [1 ]
Wessel, Patrick [1 ]
Mauer, Melissa [1 ]
Scheer, Roland [1 ]
Pistor, Paul [1 ,2 ]
机构
[1] Martin Luther Univ Halle Wittenberg, Thin Film Photovolta, Danckelmann Pl 3, D-06120 Halle, Saale, Germany
[2] Univ Pablo Olavide, Carretera Utrera 1, Seville 41013, Spain
来源
MATERIALS ADVANCES | 2022年 / 3卷 / 23期
关键词
PEROVSKITE SOLAR-CELLS; OPERATING TEMPERATURE; EXCESS PBI2; STABILITY; IODIDE; EFFICIENCY; DECOMPOSITION; DEGRADATION; PERFORMANCE; CATIONS;
D O I
10.1039/d2ma00507g
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Due to its scalability, thermal evaporation is an important processing route for perovskites in order to ensure the transition from research to commercialization. In this study, we focus on vacuum co-deposition of (i) FAPbI(3), (ii) (Cs,FA)PbI3 and (iii) (Cs,FA)Pb(I,Br)(3) at room temperature and investigate the influence of stoichiometrical variations on the development of alpha and delta phases. Considering the standard perovskite term APbX(3), where A = FA and/or Cs and X = I and/or Br, we use EDX to determine the specific ratios of A/Pb, Cs/FA as well as X/Pb, respectively. We find, that at room temperature, the FAPbI(3) delta phase is not easily suppressed. But, in both, FAPbI(3) and (Cs,FA)PbI3, more AX leads to a strong increase in alpha phase growth while more PbI2 leads to an increase in delta phase. Incorporation of Cs slightly reduces the observed AX/PbX2 threshold, at which the delta phase is suppressed. Finally, when Br is introduced to the layer, this threshold is reduced far below 3.
引用
收藏
页码:8695 / 8704
页数:10
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