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Graphene oxide induced fast curing of amino novolac phthalonitrile

机译:氧化石墨烯诱导氨基酚醛邻苯二甲腈快速固化

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摘要

Graphene oxide (GO) possessing hydroxyl and epoxy groups was synthesized by a modified Hummer's process and was found to conform to the empirical formula C-0.801[epoxy](0.190)[OH](0.009). GO was examined as a curative for amino novolac phthalonitrile (APN). It was found to facilitate the crosslinking reaction by acting as a reactant for the amino group. Additionally, epoxy and OH groups in GO react with the nitrile groups of APN providing another pathway for facilitating the curing of APN. Epoxy groups in GO react with the nitrile groups of APN in the presence of OH groups (generated by the epoxy-amine reaction), facilitating the crosslinking at a lower curing temperature. Blending with GO decreases the overall curing temperature of APN. The co-reaction of the two systems led to a single phase matrix whose failure mode changed from brittle to ductile with no penalty in the thermal stability.
机译:通过改进的悍马方法合成具有羟基和环氧基的氧化石墨烯(GO),发现其符合经验式C-0.801 [环氧](0.190)[OH](0.009)。将GO用作氨基线型酚醛邻苯二甲腈(APN)的治疗剂。发现通过充当氨基的反应物来促进交联反应。此外,GO中的环氧基和OH基团与APN的腈基反应,为促进APN的固化提供了另一条途径。 GO(在环氧胺反应生成的)中,在OH基的存在下,GO中的环氧基与APN的腈基反应,从而促进了较低固化温度下的交联。与GO共混会降低APN的总体固化温度。这两个系统的共同作用导致了一个单相矩阵,其失效模式从脆性变为延性,而热稳定性没有受到任何损害。

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