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由木质纤维素和植物油衍生成分制备具有可调热机械性能、润湿性和降解能力的可再生环氧胺树脂

Preparation of Renewable Epoxy-Amine Resins With Tunable Thermo-Mechanical Properties, Wettability and Degradation Abilities From Lignocellulose- and Plant Oils-Derived Components.

作者信息

Hollande Louis, Do Marcolino Izia, Balaguer Patrick, Domenek Sandra, Gross Richard A, Allais Florent

机构信息

URD ABI, CEBB, AgroParisTech, Pomacle, France.

UMR GENIAL, AgroParisTech, INRA, Université Paris-Saclay, Massy, France.

出版信息

Front Chem. 2019 Mar 27;7:159. doi: 10.3389/fchem.2019.00159. eCollection 2019.

Abstract

One-hundred percent renewable triphenol-GTF-(glycerol trihydroferulate) and novel bisphenols-GDF-(glycerol dihydroferulate) were prepared from lignocellulose-derived ferulic acid and vegetal oil components (fatty acids and glycerol) using highly selective lipase-catalyzed transesterifications. Estrogenic activity tests revealed no endocrine disruption for GDF bisphenols. Triethyl-benzyl-ammonium chloride (TEBAC) mediated glycidylation of all bis/triphenols, afforded innocuous bio-based epoxy precursors GDFEPO and GTF-EPO. GDFEPO were then cured with conventional and renewable diamines, and some of them in presence of GTF-EPO. Thermo-mechanical analyses (TGA, DSC, and DMA) and degradation studies in acidic aqueous solutions of the resulting epoxy-amine resins showed excellent thermal stabilities ( 5% = 282-310°C), glass transition temperatures ( ) ranging from 3 to 62°C, tunable tan α, and tunable degradability, respectively. It has been shown that the thermo-mechanical properties, wettability, and degradability of these epoxy-amine resins, can be finely tailored by judiciously selecting the diamine nature, the GTF-EPO content, and the fatty acid chain length.

摘要

利用高选择性脂肪酶催化的酯交换反应,从木质纤维素衍生的阿魏酸和植物油成分(脂肪酸和甘油)制备了100%可再生的三酚-GTF-(甘油三氢阿魏酸酯)和新型双酚-GDF-(甘油二氢阿魏酸酯)。雌激素活性测试表明,GDF双酚不会造成内分泌干扰。三乙基苄基氯化铵(TEBAC)介导的所有双酚/三酚的缩水甘油化反应,得到了无害的生物基环氧前体GDFEPO和GTF-EPO。然后,用传统的和可再生的二胺固化GDFEPO,其中一些在GTF-EPO存在的情况下进行固化。对所得环氧胺树脂进行的热机械分析(TGA、DSC和DMA)以及在酸性水溶液中的降解研究表明,它们具有优异的热稳定性(5%失重温度=282-310°C)、玻璃化转变温度(范围为3至62°C)、可调节的损耗因子以及可调节的降解性。结果表明,通过明智地选择二胺的性质、GTF-EPO的含量和脂肪酸链的长度,可以精细地调整这些环氧胺树脂的热机械性能、润湿性和降解性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88af/6445855/0728481558c6/fchem-07-00159-g0008.jpg

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