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Chemo-enzymatic functionalization of gallic and vanillic acids: synthesis of bio-based epoxy resins prepolymers

机译:没食子酸和香草酸的化学酶促官能化:生物基环氧树脂预聚物的合成

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摘要

The chemo-enzymatic epoxidation of allylated gallic and vanillic acids with lipase B from Candida antarctica and aqueous hydrogen peroxide in the presence of caprylic acid was investigated. The use of 1 molar eq of caprylic acid and 1.8-2 molar eq of H2O2 per allylic double bond led to a high degree of conversion to epoxides (89% yield for allylated gallic acid and 87% yield for allylated vanillic acid) comparatively to the hazardous peracid mCPBA (1.5-3.2 molar eq per double bond allowed 75-85% yield). The epoxidized products obtained could be used in the formulation of novel bio-based epoxy resins.
机译:在辛酸存在下,考察了南极假丝酵母脂肪酶B和过氧化氢水溶液对烯丙基化没食子酸和香草酸的化学酶促环氧化反应。与烯丙基双键相比,每个烯丙基双键使用1摩尔当量的辛酸和1.8-2摩尔当量的H2O2导致较高的环氧化物转化率(烯丙基化没食子酸的产率为89%,烯丙基化香草酸的产率为87%)。有害的过酸mCPBA(每个双键1.5-3.2摩尔当量,允许75-85%的产率)。获得的环氧化产物可用于新型生物基环氧树脂的配方。

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