研究目的
To investigate the effectiveness of PFAI treatment in passivating the FA-based perovskite surface for highly-efficient flexible PSCs.
研究成果
The PFAI treatment effectively passivates the FA-based perovskite surface, leading to the formation of 2D perovskite 'patches' that improve device performance and thermal stability. The champion flexible PSC achieved a PCE of 19.89%, demonstrating the potential of this approach for highly-efficient flexible PSCs.
研究不足
The study does not extensively explore the long-term stability under operational conditions beyond thermal stability. The mechanical stability under repeated bending cycles could be further investigated.
1:Experimental Design and Method Selection:
The study involved the fabrication of PSC devices with a planar n-i-p architecture. The effectiveness of PFAI treatment was inspected by varying the concentration of PFAI solutions and applying them to the FA-based perovskite film surface.
2:Sample Selection and Data Sources:
Perovskite films were prepared on both rigid glass substrates and flexible substrates. The films were treated with PFAI solutions of varying concentrations.
3:List of Experimental Equipment and Materials:
Materials included SnO2 colloidal dispersion, FAI, MABr, PbI2, Spiro-OMeTAD, and various solvents. Equipment included a spin coater, X-ray diffractometer, field-emission scanning electron microscope, fluorescence spectrophotometer, and solar simulator.
4:Experimental Procedures and Operational Workflow:
The perovskite precursor was spin-coated onto substrates, treated with PFAI solutions, and annealed. The HTL solution was then spin-coated, followed by the deposition of a silver electrode.
5:Data Analysis Methods:
The performance of the devices was evaluated through J-V measurements, PL spectra, TRPL measurements, SCLC method, and EIS measurements.
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Field-emission scanning electron microscope
Zeiss Sigma
Zeiss
Used to observe the morphologies of the different perovskite films.
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Digital source meter
Keithley 2420
Keithley
Used in conjunction with the solar simulator for J-V measurements.
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X-ray diffractometer
Rigaku Ultima-IV
Rigaku
Used to obtain the XRD patterns of the different films.
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SnO2 colloidal dispersion
15% in water
Alfa Aesar
Used as an electron transport layer in the fabrication of PSC devices.
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Lead (II) iodide
99.99%
Xi’an Polymer Light Technology
Used in the preparation of the perovskite precursor.
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Spiro-OMeTAD
Derthon Optoelectronic Materials Science Technology
Used as a hole transport material in the fabrication of PSC devices.
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Fluorescence spectrophotometer
FLS980
Used to record the photoluminescence (PL) spectra.
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Electrochemical station
Chenhua, CHI 660D
Chenhua
Used for electrochemical impedance spectroscopy (EIS) measurements.
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Solar simulator
Newport Oriel
Newport
Used for current density-voltage (J-V) measurements.
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