Influence of water–vapor treatment on the properties of CsPbBr3 perovskite solar cells

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作者
Bolong He
Debao Jiao
Linlin Liu
Jialong Hu
Shu Nie
Yihui Chen
Xiaoxia Wang
Yongsheng Chen
机构
[1] Zhengzhou University,Key Laboratory of Material Physics of Ministry of Education, School of Physics and Microelectronics
[2] First Middle School,undefined
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The European Physical Journal Plus | / 138卷
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摘要
At present, CsPbBr3-based perovskite solar cells (PSCs) have garnered considerable attention due to the high stability and excellent photoelectric characteristics. The thermal annealing is a conventional and effective method to improve the quality of CsPbBr3 films; however, humidity has a magic effect on PSC performance. In this work, to improve the photoelectric properties and crystal quality, a water–vapor treatment (WVT) strategy is carried out for the deposited CsPbBr3 films by electron beam evaporation before thermal annealing. It is found that during WVT, the extraction and restitution of CsBr are occurred by the aggregation and volatilization of H2O molecules on the film surface and grain boundaries due to the high solubility, leading to the reversible phase transformation from Cs4PbBr6 to CsPbBr3 and to CsPb2Br5 with the increase of treating time, and the structural reconstruction. This ion migration in film contributes to reduce the trap-state density and increase the grain size during thermal annealing. Finally, a power conversion efficiency of 7.45% for the FTO/TiO2/CsPbBr3/Carbon planar solar cells is achieved in combination with this WVT process.
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  • [11] Ullah S(2019)Tailored lattice “tape” to confine tensile interface for 11.08%-efficiency all-inorganic CsPbBr Mater. Sci. Semicond. Process. 98 5925-14532
  • [12] Wang J(2020) perovskite solar cell with an ultrahigh voltage of 1.702 V ACS Appl. Mater. Interfaces 12 320-5852
  • [13] Yang P(2022)High efficient hole extraction and stable all-bromide inorganic perovskite solar cells via derivative-phase gradient bandgap architecture Mater. Today Phys. 22 1-5804
  • [14] Liu L(2022)Defect passivation and fermi level modification for >10% evaporated all-inorganic CsPbBr Sol. Energy 232 313-1858
  • [15] Li Y(2020) perovskite solar cells Sol. Energy Mater. Sol. Cells 206 218-14134
  • [16] Rehman A(2018)Interface engineering of highly efficient perovskite solar cells Sol. Energy Mater. Sol. Cells 187 44-1599
  • [17] Yang S(2021)Influence of moisture on the preparation, crystal structure, and photophysical properties of organohalide perovskites Appl. Surf. Sci. 562 2103482-99
  • [18] Xia T(2020)Moisture assisted perovskite film growth for high performance solar cells Front. Chem. 8 14527-4142
  • [19] Guo H(2018)Moisture assisted CsPbBr Sol. Energy 174 5846-undefined
  • [20] Chen Y(2018) film growth for high-efficiency, all-inorganic solar cells prepared by a multiple sequential vacuum deposition method Crystals 8 5799-undefined