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Synthesis and characterization of isophorondiamine-based oligoamides: catalytic effect of amides during the curing of epoxy resins

机译:基于异佛索金刚石的寡聚酰胺的合成与表征:环氧树脂固化过程中酰胺催化作用

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The aminolysis products of PET could be applied in several fields. The purpose of this study was to explore their use as a dual-purpose component as cross-linkers and catalysts in epoxy curing. PET aminolysis was carried out with 1:1.5 and 1:2 PET/amine ratios to produce amides with different molecular weights. The reaction products were characterized with functional group analysis, NMR, FTIR, MALDI-TOF, and solution viscosimetry. The terephthalamides were dissolved in isophorondiamine and used as cross-linkers. Reaction kinetics studies with DSC, viscosimetry, and quantum chemical computational methods were used to characterize their accelerative effects. Our studies have shown that terephthalamides are active catalyst and their efficiency can be tuned with their molecular weight. The quantum chemical simulations suggested that the terephthalamides are in the same order of magnitude in effectiveness as phenolic accelerators. Consequently, terephthalamides are valued materials that can serve as double-purpose components in epoxy curing.
机译:PET的氨解产物可以应用于几个领域。本研究的目的是探讨其用作双向组分作为环氧树脂固化中的交联剂和催化剂。用1:1.5和1:2的PET /胺比进行PET氨解,以产生不同分子量的酰胺。反应产物的特征在于官能团分析,NMR,FTIR,MALDI-TOF和溶液粘芯。将对苯胺酰胺溶解在异侍二胺中并用作交联剂。使用DSC,粘度测定法和量子化学计算方法的反应动力学研究表征其加速效果。我们的研究表明,对苯胺酰胺是活性催化剂,它们的效率可以用它们的分子量调节。量子化学模拟表明对苯胺酰胺的效果与酚类促进剂的有效性相同。因此,对苯酞是有价值的材料,其可以用作环氧固化中的双功分组分。

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