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首页> 外文期刊>European Polymer Journal >New bio-based polymeric thermosets synthesized by ring-opening polymerization of epoxidized soybean oil with a green curing agent
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New bio-based polymeric thermosets synthesized by ring-opening polymerization of epoxidized soybean oil with a green curing agent

机译:通过环氧化大豆油与绿色固化剂的开环聚合反应合成的新型生物基聚合物热固性材料

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摘要

New polymeric thermosets with a high bio-based content were obtained by the ring-opening polymerization of two biomass derivatives, epoxidized soybean oil and maleopimaric acid, catalysed by 2-ethyl-4-methylimidazole. Maleopimaric acid with a rigid hydrogenated phenanthrene ring structure was successfully synthesized in a large quantity from abietic acid and maleic anhydride using p-toluene sulfonic acid as a catalyst, by adapting and optimizing an industrial strategy. The advantages of using maleopimaric acid as a curing agent for epoxidized soybean oil, compared with its petroleum-based analogues, were studied in detail. The results showed that the total heat release for the ring-opening polymerization of epoxidized soybean oil and maleopimaric acid was only 31.7 kJ/mol epoxy group. The tensile properties and glass transition temperature of the thermosets cured by maleopimaric acid were close to those of the products cured by the analogue with a cycloaliphatic ring, while the breaking elongation and storage modulus at room temperature of the former were greatly larger, exhibiting values of 61.5% and 1268 MPa, respectively. Additionally, the products cured with maleopimaric acid had the best thermal stability with a 10%-weight-loss temperature up to 349 degrees C and satisfactory chemical and water resistance. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过2-乙基-4-甲基咪唑催化的两种生物质衍生物(环氧化大豆油和马来酸)的开环聚合,获得了具有高生物基含量的新型聚合物热固性材料。以对甲苯磺酸为催化剂,通过调整和优化工业策略,成功地从松香酸和马来酸酐中大量合成了具有刚性氢化菲环结构的马来酸。与基于石油的类似物相比,详细研究了使用马来海马酸作为环氧化大豆油的固化剂的优势。结果表明,环氧化大豆油和马来酸的开环聚合反应的总放热量仅为31.7 kJ / mol环氧基。马来海马酸固化的热固性塑料的拉伸性能和玻璃化转变温度与脂环族类似物固化的产品的拉伸性能和玻璃化转变温度接近,而前者在室温下的断裂伸长率和储能模量大得多,显示出分别为61.5%和1268 MPa。此外,用马来海二酸固化的产品具有最佳的热稳定性,失重温度高达349摄氏度,失重10%,并且具有令人满意的耐化学性和耐水性。 (C)2016 Elsevier Ltd.保留所有权利。

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