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Chemo-Enzymatic Synthesis of Renewable Sterically-Hindered Phenolic Antioxidants with Tunable Polarity from Lignocellulose and Vegetal Oil Components

机译:从木质纤维素和植物油成分化学合成可调节极性的可再生位阻酚类抗氧化剂

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摘要

Despite their great antioxidant activities, the use of natural phenols as antioxidant additives for polyolefins is limited owing to their weak thermal stability and hydrophilic character. Herein, we report a sustainable chemo-enzymatic synthesis of renewable lipophilic antioxidants specifically designed to overcome these restrictions using naturally occurring ferulic acid (found in lignocellulose) and vegetal oils (i.e., lauric, palmitic, stearic acids, and glycerol) as starting materials. A predictive Hansen and Hildebrand parameters-based approach was used to tailor the polarity of newly designed structures. A specific affinity of Candida antarctica lipase B (CAL-B) towards glycerol was demonstrated and exploited to efficiently synthesized the target compounds in yields ranging from 81 to 87%. Antiradical activity as well as radical scavenging behavior (H atom-donation, kinetics) of these new fully biobased additives were found superior to that of well-established, commercially available fossil-based antioxidants such as Irganox 1010® and Irganox 1076®. Finally, their greater thermal stabilities (302 < Td5% < 311 °C), established using thermal gravimetric analysis, combined with their high solubilities and antioxidant activities, make these novel sustainable phenolics a very attractive alternative to current fossil-based antioxidant additives in polyolefins.
机译:尽管它们具有强大的抗氧化活性,但由于它们的热稳定性和亲水性较弱,因此限制了天然酚类作为聚烯烃抗氧化剂的用途。本文中,我们报告了可持续的化学酶法合成可再生的亲脂性抗氧化剂的方法,这些抗氧化剂专门设计为克服上述限制,使用天然存在的阿魏酸(存在于木质纤维素中)和植物油(即月桂酸,棕榈酸,硬脂酸和甘油)作为原料。基于预测的Hansen和Hildebrand基于参数的方法用于定制新设计结构的极性。证明并利用南极假丝酵母脂肪酶B(CAL-B)对甘油的特异性亲和力,可以有效合成目标化合物,收率在81%至87%之间。发现这些新型的完全基于生物的添加剂的抗自由基活性以及自由基清除行为(氢原子捐赠,动力学)优于已建立的,可商购的基于化石的抗氧化剂,例如Irganox 1010 ®和Irganox 1076 ®。最后,它们具有更高的热稳定性(302

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