研究目的
To develop large-scale, low-cost technology for fabricating efficient perovskite solar cells (PSCs) to accelerate their commercialization.
研究成果
The study successfully demonstrates the fabrication of high-performance PSCs using a fully doctor-blading technique in ambient conditions, achieving a champion PCE of 18%. The combination of composition engineering and additive-doping technology significantly improves the quality of perovskite films and device performance. This work provides a viable strategy for the scalable fabrication of efficient PSCs, potentially accelerating their commercialization.
研究不足
The study focuses on the fabrication of PSCs in ambient conditions, which may introduce variability due to environmental factors. The scalability of the doctor-blading technique for industrial production is not fully explored.
1:Experimental Design and Method Selection:
The study employs a two-step sequential deposition method with a low temperature process, combining composition engineering and additive-doping technology to fabricate high-quality perovskite films.
2:Sample Selection and Data Sources:
The samples include perovskite solar cells with a structure of ITO/SnO2/FAxMA(1-x)PbIyBr(3-y)/Spiro-OMeTAD/Ag.
3:List of Experimental Equipment and Materials:
Materials include SnO2 colloid precursor, PbI2, FAI, MABr, MACl, Spiro-OMeTAD, DMF, DMSO, chlorobenzene, acetonitrile, and F4-TCNQ. Equipment includes a doctor-blade coater, thermal evaporator, and various characterization tools like SEM, AFM, XRD, UV–vis spectrophotometer, and XPS.
4:Experimental Procedures and Operational Workflow:
The process involves doctor-blading SnO2, PbI2, and Spiro-OMeTAD layers, followed by thermal evaporation of Ag electrodes.
5:Data Analysis Methods:
The study uses J-V characteristics, IPCE spectra, dark I-V curves, EIS spectra, and Voc decay measurements to analyze the performance of the PSCs.
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DMF
99.8%
Sigma-Aldrich
Solvent for perovskite precursor
-
DMSO
99.9%
Sigma-Aldrich
Solvent for perovskite precursor
-
Chlorobenzene
99.95%
Sigma-Aldrich
Solvent for hole transport material
-
Acetonitrile
99.95%
Sigma-Aldrich
Solvent for lithium salt solution
-
SnO2 colloid precursor
15% in H2O colloidal dispersion
Alfa Aesar
Electron transport layer in perovskite solar cells
-
PbI2
99%
Tian’jin Weiyi Technology Corp
Perovskite precursor material
-
FAI
Xi’an Polymer Light Technology Corp
Perovskite precursor material
-
MABr
Xi’an Polymer Light Technology Corp
Perovskite precursor material
-
MACl
Xi’an Polymer Light Technology Corp
Perovskite precursor material
-
Spiro-OMeTAD
99%
Wuhan Zhuojia Technology Co.,Ltd
Hole transport material in perovskite solar cells
-
F4-TCNQ
Xi’an Polymer Light Technology Corp
Doping additive for perovskite
-
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