研究目的
Investigating the effects of yolk-shell SnO2@TiO2 nanospheres as electron transport layers on the performance and stability of mesoscopic perovskite solar cells.
研究成果
The yolk-shell SnO2@TiO2 nanospheres as ETLs significantly improve the PCE and reduce hysteresis in PSCs compared to SnO2 ETLs. The study demonstrates the potential of yolk-shell structures in enhancing the performance and stability of PSCs.
研究不足
The study focuses on the performance and stability of PSCs with specific ETLs under controlled conditions. Potential areas for optimization include further reduction of defects and improvement of charge transport properties.
1:Experimental Design and Method Selection:
SnO2 nanoparticles were synthesized and modified by TiO2 shell through sol–gel method. Band gap energy and photoluminescence properties were investigated by UV–Vis absorption spectra and PL spectroscopy.
2:Sample Selection and Data Sources:
The nanoparticles were used as ETLs for fabrication of PSCs.
3:List of Experimental Equipment and Materials:
FE-SEM, TEM, XRD, PL spectrophotometer, UV–Vis spectrophotometer, Keithley 2400 source meter, IviumStat for EIS.
4:Experimental Procedures and Operational Workflow:
Fabrication of PSCs with different ETLs, measurement of J–V characteristics under simulated sunlight, EIS analysis.
5:Data Analysis Methods:
Analysis of optical properties, photovoltaic performance, and charge transport resistance.
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PL spectrophotometer
Perkin Elmer
Perkin Elmer
Steady-state photoluminescence spectra measurement
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UV–Vis spectrophotometer
LAMBDA 35
Perkin Elmer
Absorption spectra determination
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Source meter
Keithley 2400
Keithley
Photocurrent density–voltage characteristics measurement
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FE-SEM
TESCAN MIRA3
TESCAN
Surface morphology observation
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TEM
Philips CM30
Philips
Nanostructure confirmation
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XRD
Philips X’Pert PRO
Philips
Structural and crystalline phases identification
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EIS analyzer
IviumStat
Ivium
Electrochemical impedance spectroscopy
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