研究目的
To develop a high-performance, low-cost, ETL-free plasmonic perovskite photodetector using a modified perovskite deposition method in ambient air.
研究成果
The study successfully demonstrated the superior performance of an ETL-free self-powered perovskite photodetector by integrating plasmonic Ag NPs in the HTL layer. The hybrid device showed enhanced responsivity, faster photoresponse, and improved charge transport, attributed to plasmon-enhanced optical absorption and favorable band alignment. This approach is promising for the development of high-performance, low-cost perovskite photodetectors.
研究不足
The study is limited by the ambient air processing conditions with high humidity, which may affect the stability and performance of the perovskite photodetector. Additionally, the use of Ag NPs could potentially react with the perovskite material, leading to degradation over time.
1:Experimental Design and Method Selection:
A novel N2 gas assisted fast crystallization method was used for the deposition of perovskite film in ambient condition.
2:Sample Selection and Data Sources:
Fluorine doped tin oxide (FTO) coated glass substrates were used.
3:List of Experimental Equipment and Materials:
FESEM, TEM, AFM, XRD, UV–vis absorbance spectra, PL and TRPL measurements, impedance spectroscopy, KPFM.
4:Experimental Procedures and Operational Workflow:
Fabrication of the photodetector involved spin coating of PEDOT:PSS with Ag NPs on FTO, followed by perovskite layer deposition and aluminum electrode deposition.
5:Data Analysis Methods:
The performance of the photodetector was evaluated through photocurrent switching, responsivity, and detectivity measurements.
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TEM
JEOL-JEM 2010
JEOL
High magnification imaging of Ag NPs.
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AFM
Bruker Innova
Bruker
Examination of the topography of Pe films and KPFM analysis.
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XRD
Rigaku RINT 2500 TRAX?III
Rigaku
Structural characterizations of perovskite film.
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UV–vis spectrophotometer
Lamda 950
PerkinElmer
Measurement of UV–vis absorbance spectra of the samples.
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TRPL system
LifeSpecII
Edinburgh Instruments
Time-resolved PL (TRPL) measurements.
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Source meter
Keithley 2400
Keithley
Measurement of I–V characteristics and photoelectric response curves.
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FESEM
Sigma
Zeiss
Characterization of morphology and elemental compositions of Pe and PEDOT:PSS film.
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Fluorimeter
Fluoromax-4
Horiba Jobin Yvon
Recording of steady-state photoluminescence (PL) spectrum.
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Xenon lamp
Newport
Light source for photoelectric response measurements.
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Manual monochromator
Newport
Wavelength selection for photoelectric response measurements.
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Chopper
Stanford Research Systems
Modulation of light source for photoelectric response measurements.
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