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Published on: August 25, 2016
Synthesis, Processing, and Performance of a Furan-Based Glycidyl Amine Epoxy Resin
Amy Honnig Bassett1, Emre Kinaci1, Giuseppe R Palmese1
1Department of Chemical Engineering, Advanced Materials and Manufacturing Institute (AMMI), Rowan University, 201 Mullica Hill Rd., Glassboro, New Jersey 08028, United States.
None:
Furan diepoxy (FDE), a diglycidyl amine with a pendant furan, was synthesized using a 1:10 furfuryl amine/epichlorohydrin ratio. Aliquots were taken during the synthesis and characterized using gel permeation chromatography (GPC) and Fourier transform infrared spectroscopy (FTIR). Two significant products, FDE and α-chlorohydrin FDE, formed simultaneously with increasing reaction time. Eventually, α-chlorohydrin FDE became the main product. Purified FDE and α-chlorohydrin FDE were cured with an amine to investigate the network formation using differential scanning calorimetry (DSC), FTIR, and 1H and 13C-{1H} nuclear magnetic resonance (NMR). Dynamic mechanical analysis (DMA) was conducted to measure the thermomechanical properties and create a structure-property relationship. Compared to purified FDE, which had a storage modulus (E') at 25 °C of 2.9 GPa and a T g of 80 °C, α-chlorohydrin FDE had increased E' at 25 °C of 4.4 GPa and T g of 129 °C. The improved properties resulted from α-chlorohydrin FDE forming new cross-links via ring-opening of the furan.
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