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首页> 外文期刊>Polymer international >Novel thermal curing of cycloaliphatic resins by thiol-epoxy click process with several multifunctional thiols
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Novel thermal curing of cycloaliphatic resins by thiol-epoxy click process with several multifunctional thiols

机译:用几种多功能硫醇用硫醇 - 环氧树脂咔啉树脂的新型热固化脂环族树脂

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摘要

Novel thermosets were prepared by the base-catalysed reaction between a cycloaliphatic resin (ECC) and various thiol crosslinkers. 4-(N,N-Dimethylaminopyridine) (DMAP) was used as base catalyst for the thiol-epoxy reaction. A commercial tetrathiol (PETMP) and three different thiols synthesized by us, 6SH-SQ, 3SH-EU and 3SH-ISO, were tested. 6SH-SQ and 3SH-EU were prepared from vinyl or allyl compounds from renewable resources such as squalene and eugenol, respectively. Thiol 3SH-ISO was prepared starting from commercially available triallyl isocyanurate. A kinetic study of the mixtures was performed using differential scanning calorimetry. Stoichiometric ECC/thiol/DMAP formulations were cured at 120 degrees C for 1 h, at 150 degrees C for 1 h and post-cured for 30 min at 200 degrees C. The materials were characterized using Fourier transform infrared spectroscopy, thermogravimetric analysis and dynamic mechanical thermal analysis. The results revealed that the materials obtained from the synthesized thiols had higher thermal stability and glass transition temperatures than those obtained from the commercial PETMP. In addition, all the materials obtained exhibited very good transparency. This study proves the ability of multifunctional thiols to crosslink cycloaliphatic epoxy resins, leading to more flexible materials than those obtained by cationic homopolymerization of ECC or base-catalysed ECC-anhydride copolymerization. (c) 2017 Society of Chemical Industry
机译:通过脂环族树脂(ECC)和各种硫醇交联剂之间的基催化反应制备新的热固性。 4-(N,N-二甲基氨基吡啶)(DMAP)用作硫醇 - 环氧反应的基础催化剂。测试了由US,6SH-SQ,3SH-EU和3SH-ISO合成的商业四硫醇(PETMP)和三种不同硫醇。 6SH-SQ和3SH-EU由来自可再生资源的乙烯基或烯丙基化合物,例如Squalene和丁烯醇。从商业上可获得的三烯丙基异氰脲酸酯开始制备硫醇3SH-ISO。使用差示扫描量热法进行混合物的动力学研究。化学计量ECC /硫醇/ DMAP制剂在120℃下固化1小时,在150℃下以1小时,并在200摄氏度下固化30分钟。使用傅里叶变换红外光谱,热重分析和动态表征材料的特征。机械热分析。结果表明,由合成的硫醇获得的材料具有比从商业PETMP获得的更高的热稳定性和玻璃化转变温度。此外,所获得的所有材料表现出非常好的透明度。该研究证明了多功能硫醇对交联脂环族环氧树脂的能力,导致比通过ECC或碱催化的ECC-酐共聚的阳离子均聚物获得的更柔韧的材料。 (c)2017化学工业协会

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