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利用迈克尔加成反应从妥尔油脂肪酸开发生物基聚合物

Bio-Based Polymer Developments from Tall Oil Fatty Acids by Exploiting Michael Addition.

作者信息

Pomilovskis Ralfs, Mierina Inese, Fridrihsone Anda, Kirpluks Mikelis

机构信息

Polymer Laboratory, Latvian State Institute of Wood Chemistry, Dzerbenes St. 27, LV-1006 Riga, Latvia.

Institute of Technology of Organic Chemistry, Faculty of Materials Science and Applied Chemistry, Riga Technical University, P. Valdena St. 3/7, LV-1048 Riga, Latvia.

出版信息

Polymers (Basel). 2022 Sep 28;14(19):4068. doi: 10.3390/polym14194068.

Abstract

In this study, previously developed acetoacetates of two tall-oil-based and two commercial polyols were used to obtain polymers by the Michael reaction. The development of polymer formulations with varying cross-link density was enabled by different bio-based monomers in combination with different acrylates-bisphenol A ethoxylate diacrylate, trimethylolpropane triacrylate, and pentaerythritol tetraacrylate. New polymer materials are based on the same polyols that are suitable for polyurethanes. The new polymers have qualities comparable to polyurethanes and are obtained without the drawbacks that come with polyurethane extractions, such as the use of hazardous isocyanates or reactions under harsh conditions in the case of non-isocyanate polyurethanes. Dynamic mechanical analysis, differential scanning calorimetry, thermal gravimetric analysis, and universal strength testing equipment were used to investigate the physical and thermal characteristics of the created polymers. Polymers with a wide range of thermal and mechanical properties were obtained (glass transition temperature from 21 to 63 °C; tensile modulus (Young's) from 8 MPa to 2710 MPa and tensile strength from 4 to 52 MPa). The synthesized polymers are thermally stable up to 300 °C. The suggested method may be used to make two-component polymer foams, coatings, resins, and composite matrices.

摘要

在本研究中,使用先前开发的两种妥尔油基多元醇和两种市售多元醇的乙酰乙酸酯,通过迈克尔反应制备聚合物。通过不同的生物基单体与不同的丙烯酸酯(双酚A乙氧基化二丙烯酸酯、三羟甲基丙烷三丙烯酸酯和季戊四醇四丙烯酸酯)组合,实现了具有不同交联密度的聚合物配方的开发。新型聚合物材料基于与聚氨酯适用的相同多元醇。这些新型聚合物具有与聚氨酯相当的性能,并且在制备过程中不存在聚氨酯制备过程中出现的缺点,例如使用危险的异氰酸酯或在非异氰酸酯聚氨酯情况下在苛刻条件下进行反应。使用动态力学分析、差示扫描量热法、热重分析和万能强度测试设备研究了所制备聚合物的物理和热性能。获得了具有广泛热性能和力学性能的聚合物(玻璃化转变温度为21至63℃;拉伸模量(杨氏模量)为8MPa至2710MPa,拉伸强度为4至52MPa)。合成的聚合物在高达300℃的温度下具有热稳定性。所建议的方法可用于制备双组分聚合物泡沫、涂料、树脂和复合基质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33a8/9571392/d78b95e67001/polymers-14-04068-g001.jpg

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