研究目的
To improve the performance of perovskite solar cells through interfacial engineering using organophosphorus ligands for defect-passivation and efficient charge-transfer.
研究成果
Organophosphorus ligands, particularly TPPO, effectively passivate defects and facilitate charge transfer in perovskite solar cells, leading to improved power conversion efficiency and stability. The study highlights the importance of combining defect-passivation with efficient charge-transfer for enhancing solar cell performance.
研究不足
The study focuses on the interfacial modification with organophosphorus ligands and its effects on perovskite solar cells' performance and stability. Potential limitations include the scalability of the antisolvent process and the long-term stability under varying environmental conditions beyond 50% humidity.
1:Experimental Design and Method Selection:
Organophosphorus ligands (TOPO and TPPO) were used as passivators through antisolvent process for interfacial modification.
2:Sample Selection and Data Sources:
Mixed cation perovskite, Cs
3:05FA79MA16Pb(I83Br17)3, was applied. List of Experimental Equipment and Materials:
SEM, XRD, UV–vis spectrophotometer, XPS, FTIR, PL and TRPL spectrometers, electrochemical impedance spectrometer, solar simulator.
4:Experimental Procedures and Operational Workflow:
Perovskite films were deposited via a two-step spin coating process with antisolvent treatment, followed by annealing. Hole-transporting layer was spin-coated, and gold electrodes were deposited by thermal evaporation.
5:Data Analysis Methods:
SEM for morphology, XRD for crystal structure, UV–vis for optical properties, XPS and FTIR for surface composition and bonding, PL and TRPL for photoelectric properties, SCLC for trap density, EIS for charge-transfer process.
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Zeiss Merlin scanning electron microscopy
Zeiss
Recording film morphology
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Rigaku SmartLab 9 kW system
Rigaku
Collecting XRD patterns
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PERSEE TU-1901 spectrophotometer
PERSEE
Obtaining UV–vis absorption spectra
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XIESCALAB 250Xi electron spectroscopy
VG Scientific
Performing XPS
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IRTracer-100
SHIMADZU
Collecting FT-IR spectra
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Edinburgh FS-5 spectrometer
Edinburgh
Detecting PL spectra and TRPL signals
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CHI660E Electrochemical Analyzer/Workstation
ChenHua
Performing electrochemical impedance spectroscopy
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Drop Shape Analyzer
KRUSS
Measuring contact angle
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Keithley 2400 parameter analyzer
Keithley
Measuring J-V characteristics
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Sirius-SS150A-D solar simulator
ZoliX
Providing solar spectrum illumination
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Enli Technology EQE measurement system
QE-R
Enli Technology
Recording EQE spectra
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