研究目的
To investigate the effects of an auxiliary benzothiadiazole acceptor and bulky substituents on the donor of porphyrin dyes with a carbazole donor on the performance of dye-sensitized solar cells (DSSCs).
研究成果
The study concludes that the simultaneous introduction of bulky dihexyloxyphenyl groups and a benzothiadiazole unit in porphyrin dyes can synergistically broaden the absorption spectra and suppress dye aggregation, leading to improved photocurrent and photovoltage in DSSCs. The highest efficiency of 7.03% was achieved with XW56, demonstrating the potential of this approach for developing efficient DSSCs.
研究不足
The study acknowledges the inherent drawbacks of porphyrin dyes, such as absorption valleys between the Soret and Q bands and strong tendency for aggregation. The introduction of bulky groups and BTD units addresses some of these issues but may also introduce new challenges such as more severe dye aggregation and decreased Voc values.
1:Experimental Design and Method Selection:
The study involved the design and synthesis of three porphyrin sensitizers (XW54–XW56) with modifications to the donor and acceptor units to explore their effects on DSSC performance. Theoretical models and algorithms were employed for molecular design and optimization.
2:Sample Selection and Data Sources:
The samples were the synthesized porphyrin dyes, and data were collected from photovoltaic measurements, UV-vis absorption spectra, cyclic voltammetry, and electrochemical impedance spectroscopy.
3:List of Experimental Equipment and Materials:
Fluorine-doped SnO2 conducting glass (FTO glass), TiO2 paste (18 NR-T and 18 NR-AO), Bruker AM 400 spectrometer, Waters LCT Premier XE spectrometer, Varian Cary 60 spectrophotometer, Zahner IM6e electrochemical workstation, AM 1.5 solar simulator, Newport Oriel PV reference cell system, Keithley Instruments model 2400 source meter, Newport-74125 system for IPCE measurements, Zahner IM6e Impedance Analyzer.
4:5 solar simulator, Newport Oriel PV reference cell system, Keithley Instruments model 2400 source meter, Newport-74125 system for IPCE measurements, Zahner IM6e Impedance Analyzer. Experimental Procedures and Operational Workflow:
4. Experimental Procedures and Operational Workflow: The synthesis of porphyrin dyes involved multiple steps including Ullmann reaction, Suzuki-coupling reactions, bromination, and hydrolysis. DSSCs were fabricated using the synthesized dyes, and their performance was evaluated through J-V curves and IPCE spectra.
5:Data Analysis Methods:
Data were analyzed using statistical techniques and software tools including Gaussian09 for DFT calculations and ZSimpWin for fitting EIS data.
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Bruker AM 400 spectrometer
AM 400
Bruker
Used for recording 1H NMR and 13C NMR spectra.
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Fluorine-doped SnO2 conducting glass
FTO glass
Geao Science and Educational Co. Ltd
Used as the conducting substrate for the solar cells.
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TiO2 paste
18 NR-T and 18 NR-AO
Dyesol Ltd
Used for printing the TiO2 films on the FTO glass.
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Waters LCT Premier XE spectrometer
LCT Premier XE
Waters
Used for high resolution mass spectroscopy (HRMS) measurements.
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Varian Cary 60 spectrophotometer
Cary 60
Varian
Used for measuring UV-Vis absorption spectra.
Cary 60 UV-Vis Spectrophotometer
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Zahner IM6e electrochemical workstation
IM6e
Zahner
Used for cyclic voltammograms and electrochemical impedance spectroscopy measurements.
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AM 1.5 solar simulator
91160
Oriel
Used for photovoltaic measurements under simulated sunlight.
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Newport Oriel PV reference cell system
91150 V
Newport
Used for calibrating the power of the simulated light.
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Keithley Instruments model 2400 source meter
2400
Keithley Instruments
Used for obtaining J–V curves by measuring the generated photocurrent.
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Newport-74125 system
74125
Newport
Used for obtaining action spectra of the incident monochromatic photon-to-electron conversion efficiency (IPCE).
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Zahner IM6e Impedance Analyzer
IM6e
ZAHNER-Elektrik GmbH & CoKG
Used for electrochemical impedance spectroscopy (EIS) measurements.
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