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Bio-based epoxy-anhydride thermosets from six-armed linoleic acid-derived epoxy resin

机译:来自六臂亚油酸衍生的环氧树脂的生物基环氧酐热固性剂

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Six-armed linoleic acid-derived epoxy resin with a rigid triazine core (EHL) was prepared through the esterification reaction between linoleic acid and hexamethylol melamine, followed by epoxidation of unsaturated fatty acid chains by using hydrogen peroxide. Bio-based epoxy-anhydrides thermosets were then produced from this resin by using 4-methyl hexahydrophthalic anhydride as the hardener and 1,8-diazabicyclo[5.4.0]undec-7-ene as the catalyst; the properties of these thermosets were then systematically investigated. The epoxy oligomer was fully characterized and confirmed through Fourier-transform infrared spectroscopy, nuclear magnetic resonance, and matrix-assisted laser desorption and ionization time-of-flight mass spectrometry. The physical properties of this oligomer were also studied according to its bulk viscosity, epoxy equivalent weight, and density. The curing extent of the bio-based epoxy-anhydride thermosets were measured through differential scanning calorimetry and gel content testing. The properties of these thermosets were characterized through tensile testing, dynamic mechanical thermal analysis, and thermogravimetric analysis. Compared with thermosets based on benchmark bio-based epoxy resins, such as epoxidized soybean oil and epoxidized sucrose soyate, EHL-based thermosets showed higher glass transition temperatures, and enhanced tensile strength and modulus for a given cross-link density. These enhancements can be rationalized according to the rigidity of the triazine core, and the cohesive energy stemmed from the inter-molecular interaction of highly polarized heterocycle.
机译:通过亚油酸和六羟甲基三聚氰胺之间的酯化反应制备具有刚性三嗪核(EHL)的六臂亚油酸衍生的环氧树脂,通过过氧化氢反应,然后通过过氧化氢环氧化不饱和脂肪酸链。然后通过使用4-甲基六氢邻苯甲酸酐作为硬化剂和1,8-二氮杂双环[5.4.0] UDEC-7-ENE作为催化剂,通过该树脂制造生物基环氧酸酐热固性体。然后系统地研究了这些热固性的性质。通过傅里叶变换红外光谱,核磁共振和基质辅助激光解吸和飞行时间质谱法,全面地表征并确认了环氧低聚物。还根据其体积粘度,环氧当量重量和密度来研究该低聚物的物理性质。通过差示扫描量热法测量生物基环氧酐热固性谱的固化程度和凝胶含量试验。通过拉伸检测,动态机械热分析和热重分析来表征这些热固性件的性质。与基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于基于的豆油和环氧化蔗糖酱油,基于EHL的热固性剂显示出更高的玻璃化转变温度,并且增强的拉伸强度和给定的交联密度的模量。这些增强可以根据三嗪芯的刚性合理化,并且粘性能量源于高偏振杂环的分子间相互作用。

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