2016
DOI: 10.1039/c5ra25431k
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A novel phthalonitrile monomer with low post cure temperature and short cure time

Abstract: 3-(2-Aminophenoxy)-phthalonitrile was designed and synthesized. Measurements show that the monomer has higher cure reactivity and can cure at lower temperatures in a short time and with a higher conversion, giving a better thermal stability.

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Cited by 27 publications
(13 citation statements)
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“…Phthalonitrile resins are formed from melt by radical polymerization reaction, accompanied by more complex reactions of triazine and phthalocyanine formation . In this paper, curing process with multiple reactions, that mimics actual chemical reaction pathways, is implemented at the mesoscale level .…”
Section: Methodology Developmentmentioning
confidence: 99%
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“…Phthalonitrile resins are formed from melt by radical polymerization reaction, accompanied by more complex reactions of triazine and phthalocyanine formation . In this paper, curing process with multiple reactions, that mimics actual chemical reaction pathways, is implemented at the mesoscale level .…”
Section: Methodology Developmentmentioning
confidence: 99%
“…In experiments the ratios between reaction rates of these reactions can be controlled by chemical structure of reactants and temperature regime (but are still unknown) . In simulations two‐stage process is implied to simulate the actual technological curing procedure.…”
Section: Methodology Developmentmentioning
confidence: 99%
See 1 more Smart Citation
“…As an important class of high performance thermosetting matrix, phthalonitrile resins exhibited many excellent properties, such as high glass transition temperature ( T g ), outstanding thermal and mechanical properties, low water absorptivity, and superior flame and chemical corrosion resistance . However, due to the high crosslinking density and high melting point, phthalonitrile resins exhibited brittleness and narrow processing window, which strongly limited its further applications.…”
Section: Introductionmentioning
confidence: 99%
“…Recently, it has attracted more attention and has been applied in aviation, aerospace, boat construction and other elds. [6][7][8][9][10] Carbon ber (C f ) is widely used as a reinforcing phase in matrix composite materials because of its high strength, high modulus, and low density, among other advantages. [11][12][13][14] Therefore, the study of the performance at the interface between the PN resin and carbon bers is a particularly important, although underappreciated, area of research.…”
Section: Introductionmentioning
confidence: 99%