研究目的
Investigating the synthesis and characteristics of new organic red emissive materials based on phenanthro[9,10-d]imidazole for applications in organic light emitting diodes (OLEDs).
研究成果
The study successfully synthesized two new D-A-D type PIM derivatives, PIDSB and PIDPh, with high PLQYs and demonstrated their potential in OLED applications. PIDPh, in particular, showed promising results with a red electroluminescence peaking at 640 nm and a CIE coordinate of (0.617, 0.396), meeting the criteria for red OLEDs. The research provides new insights into the design of efficient red-fluorescent molecules.
研究不足
The study focuses on the synthesis and characterization of two specific PIM-based derivatives, and their application in OLEDs. The limitations include the specific focus on red emissive materials and the need for further optimization for higher efficiency in OLED applications.
1:Experimental Design and Method Selection:
The study involved the design and synthesis of two new donor-acceptor-donor type phenanthro[9,10-d]imidazole (PIM) -based derivatives, PIDSB and PIDPh, using PIM as the donor and CNDSB and DPFN as respective acceptors.
2:Sample Selection and Data Sources:
The materials were characterized by 1H NMR, MS, FTIR, elemental analysis, and their thermal properties were estimated by TGA and DSC.
3:List of Experimental Equipment and Materials:
Instruments used include a Bruker AVANCE III 500 spectrometer, Vario micro cube CHNS elemental analysis instrument, AXIMA-CFRTM plus instrument, VERTEX 80 V from Bruker, Perkin-Elmer thermal analysis system, NETZSCH (DSC-204) instrument, CHI660C electrochemical workstation, Shimadzu UV-3100 spectrophotometer, and Shimadzu RF-5301PC spectrophotometer.
4:Experimental Procedures and Operational Workflow:
The synthesis involved Knoevenagel reaction and Suzuki coupling reaction, followed by purification and characterization.
5:Data Analysis Methods:
The photophysical properties were analyzed using UV-vis and fluorescence spectra, and the electrochemical properties were measured by cyclic voltammetry.
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Bruker AVANCE III 500 spectrometer
AVANCE III 500
Bruker
Recording 1H NMR spectra
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VERTEX 80 V
80 V
Bruker
Fourier Transform Infrared (FTIR) spectrometer
VERTEX 80 & 80v FT-IR Spectrometers
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CHI660C electrochemical workstation
660C
CHI
Electrochemical measurements
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Shimadzu UV-3100 spectrophotometer
UV-3100
Shimadzu
Recording UV-vis spectra
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Shimadzu RF-5301PC spectrophotometer
RF-5301PC
Shimadzu
Recording fluorescence spectra
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Vario micro cube CHNS elemental analysis instrument
micro cube
Vario
Elemental analysis
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AXIMA-CFRTM plus instrument
AXIMA-CFRTM plus
Recording MALDI-TOF-MS mass spectra
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Perkin-Elmer thermal analysis system
Perkin-Elmer
Thermal gravity analysis (TGA)
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NETZSCH (DSC-204) instrument
DSC-204
NETZSCH
Differential scanning calorimeter (DSC) analysis
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