研究目的
Investigating the decrease of intermolecular interactions for less-doped efficient deep blue monomer light-emitting diodes.
研究成果
The study demonstrated that the tert-butyl substituents for BNs film significantly decreased intermolecular interaction, especially the tert-butyl substituents on the molecular backbone of BN6 play a major role in inhibiting dimer and crystallization-induced emission, resulting in a reduction of concentration quenching and improving colour purity from monomer emission. This was further evidenced in behaviour of electroluminescent devices based on doped and un-doped devices.
研究不足
The study focuses on the photophysical properties and EL performance of BN5 and BN6, but the long-term stability and operational lifetime of the devices were not investigated.
1:Experimental Design and Method Selection:
The study involved the synthesis of two novel tert-butyl modified naphthyl derivates, BN5 and BN6, and their photophysical properties and high-efficiency deep-blue electroluminescence (EL) in less-concentrated condensed phase were investigated.
2:Sample Selection and Data Sources:
The samples used were BN5 and BN6 synthesized through Suzuki coupling reaction.
3:List of Experimental Equipment and Materials:
Chemicals and reagents were used as received from commercial sources. ITO-coated glass substrates were purchased from CSG Holding Co. Ltd (China).
4:Experimental Procedures and Operational Workflow:
The devices were fabricated by conventional vacuum deposition of the organic layer and cathode onto an ITO-coated glass substrate. UV-vis absorption spectra were measured with an ultraviolet-visible-near infrared spectrophotometer. Photoluminescence characteristics were measured on a single-photon counter.
5:Data Analysis Methods:
The current density-voltage-luminance (J-V-L) characteristics were measured by a Keithley 2400 source meter and a PR-650 Spectra Colorimeter.
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ultraviolet-visible-near infrared spectrophotometer
U-3900H
Hitachi
Measuring UV-vis absorption spectra
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single-photon counter
FLSP920
Edinburgh Instruments
Measuring photoluminescence characteristics
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electrochemical analyser
CH Instrument 660E
CH Instruments
Carrying out cyclic voltammetry and differential pulse voltammetry
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diffractometer
Bruker D8 VENTURE
Bruker
Collecting single-crystal X-ray diffraction data
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source meter
Keithley 2400
Keithley
Measuring current density-voltage-luminance characteristics
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thermal analyser
TA Q500 HiRes
TA Instruments
Determining glass transition temperatures and decomposition temperature
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Spectra Colorimeter
PR-650
Photo Research
Measuring luminance and spectra of each device
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