Photocurable Oil-Based Thermosets Containing Modifiers from Renewable Sources for Coating Applications.

IF 4.7 Q1 POLYMER SCIENCE ACS polymers Au Pub Date : 2024-10-28 eCollection Date: 2024-12-11 DOI:10.1021/acspolymersau.4c00068
Vojtěch Jašek, Jan Fučík, Otakar Bartoš, Silvestr Figalla, Radek Přikryl
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Abstract

Coating materials involving nature-inspired compounds or renewable sources have recently attracted vast attention. This article presents the synthesis of modified rapeseed oil (MRO) as a precursor possessing high biobased carbon content suitable for cured thermosets formation. Two reactive diluents based on renewable sources, methacrylated methyl 3-hydroxybutyrate (M3HBMMA) and ethyl 3-hydroxybutyrate (E3HBMMA), were successfully synthesized. Lastly, isosorbide monomethacrylate (MISD) was suggested and produced as a polarity modifier miscible with modified curable oil systems capable of increasing the thermoset surface energy. All synthesized compounds were structurally analyzed via NMR, ESI-MS, and FTIR. The characterized reactive substances were coated on paper, stainless steel, and beech wood to investigate their suitability for forming thin layers. The paper dip coating verified the reactive diluting properties of M3HBMMA, resulting in the average formed coating deviation decrease (87.5% for undiluted MRO and 28.0% for 50 wt % M3HBMMA containing MRO). Also, the additional cured thermoset weight decreased from 350 to 69 wt % for the same systems. The standardized bend test applied on the coated stainless steel specimens revealed the thermoset's flexibility and adhesion increase from a 12 ± 2° bending angle of 100% pure MRO to a 121 ± 2° bending angle measured for 40 wt % E3HBMMA containing the MRO-based thermoset. The coated beech wood samples underwent the standardized cross-hatch test investigating the substrate's coating quality. The 100% MRO reached a level 1 rating (second worst), while the system with 40 wt % of MISD obtained a level 5 rating (the best).

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含可再生改性剂的光固化油基热固性涂料。
近年来,涉及天然化合物或可再生资源的涂层材料引起了广泛关注。本文介绍了改性菜籽油(MRO)的合成,作为一种具有高生物基碳含量的前驱体,适用于固化热固性材料的形成。以可再生原料为原料,成功合成了2种活性稀释剂甲基丙烯酸基3-羟基丁酸甲酯(M3HBMMA)和3-羟基丁酸乙酯(E3HBMMA)。最后,提出了异山梨酯单甲基丙烯酸酯(MISD)作为一种极性调节剂,与改性的可固化油体系混溶,能够提高热固性表面能。通过NMR、ESI-MS和FTIR对合成的化合物进行了结构分析。将所表征的反应物质涂布在纸、不锈钢和山毛榉木上,考察其形成薄层的适宜性。纸浸涂层验证了M3HBMMA的反应稀释性能,导致平均形成的涂层偏差降低(未稀释的MRO降低87.5%,含MRO的M3HBMMA降低28.0%)。此外,对于相同的系统,额外固化热固性重量从350 wt %下降到69 wt %。对涂层不锈钢试样进行的标准化弯曲测试显示,热固性材料的柔韧性和附着力从100%纯MRO的12±2°弯曲角增加到含有MRO基热固性材料的40 wt % E3HBMMA的121±2°弯曲角。涂覆后的山毛榉木样品进行了标准化的交叉舱口试验,以调查基材的涂覆质量。100% MRO达到1级评级(第二差),而40% MISD的系统获得5级评级(最好)。
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