研究目的
To promote the direct application of tung oil in the coating field by preparing tung oil-based polymers with excellent mechanical properties using a cationic photoinitiator as a 'green' initiator.
研究成果
The study successfully demonstrated that TAS can initiate cationic polymerization of ME under UV irradiation, with further polymerization requiring heating treatment. Optimal reaction conditions were identified, and tung oil-based polymers with good hydrophobicity and mechanical properties were prepared. The addition of divinylbenzene and styrene improved the mechanical properties and glass transition temperatures of the polymers.
研究不足
The study focused on the cationic polymerization of tung oil and its derivatives, with specific conditions and initiators. The applicability of the findings to other vegetable oils or under different conditions was not explored.
1:Experimental Design and Method Selection:
The study involved the preparation of tung oil-based polymers using a cationic photoinitiator (TAS) under UV irradiation and heating treatment. The cationic polymerization mechanism was characterized via nuclear magnetic resonance spectroscopy.
2:Sample Selection and Data Sources:
Methyl eleostearate (ME) derived from tung oil was used as a model compound. The effects of different monomers on the properties of tung oil-based polymers were studied.
3:List of Experimental Equipment and Materials:
Materials included tung oil, sodium hydroxide, magnesium sulfate, sulfuric acid, phosphoric acid, methanol, acetone, tetrahydrofurane (THF), triarylsulfonium salt (TAS), and diaryliodonium salts (DAI). Equipment included a photochemical reaction apparatus, FT-IR spectrometer, Bruker AV600 spectrometer, Netzsch DMA 242E dynamic mechanical analyzer, and a universal testing machine.
4:Experimental Procedures and Operational Workflow:
The mixtures of ME and TAS were irradiated by UV light and subsequently heated. The properties of the resulting polymers were tested.
5:Data Analysis Methods:
The degree of double bond conversion was determined by 1H NMR spectra analysis. Dynamic mechanical properties and mechanical tests were conducted to evaluate the polymers.
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Bruker AV600 spectrometer
AV600
Bruker
Conducting 1H NMR spectroscopy
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universal testing machine
AGS-X
Shimadzu
Mechanical tests of polymeric ?lms
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FT-IR spectrometer
VERTEX 80
BRUKER
Recording Fourier transform infrared spectroscopy of samples
VERTEX 80 & 80v FT-IR Spectrometers
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high pressure mercury lamp
500 W
UV irradiation source for initiating cationic polymerization
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Netzsch DMA 242E dynamic mechanical analyzer
DMA 242E
Netzsch
Determining the dynamic mechanical behavior of the polymeric ?lms
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