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可扩展的绿色方法合成乙酸酯香料。

Scalable Green Approach Toward Fragrant Acetates.

机构信息

Department of Organic Chemistry, Slovak University of Technology, Radlinského 9, 81237 Bratislava, Slovakia.

出版信息

Molecules. 2020 Jul 14;25(14):3217. doi: 10.3390/molecules25143217.

Abstract

The advantageous properties of ethylene glycol diacetate (EGDA) qualify it as a useful substitute for glycerol triacetate (GTA) for various green applications. We scrutinised the lipase-mediated acetylation of structurally diverse alcohols in neat EGDA furnishing the range of naturally occurring fragrant acetates. We found that such enzymatic system exhibits high reactivity and selectivity towards activated (homo) allylic and non-activated primary/secondary alcohols. This feature was utilised in the scalable multigram synthesis of fragrant ()-hex-3-en-1-yl acetate in 70% yield. In addition, the Lipozyme 435/EGDA system was also found to be applicable for the chemo-selective acetylation of (hydroxyalkyl) phenols as well as for the kinetic resolution of chiral secondary alcohols. Lastly, its discrimination power was demonstrated in competitive experiments of equimolar mixtures of two isomeric alcohols. This enabled the practical synthesis of 1-pentyl acetate isolated as a single product in 68% yield from the equimolar mixture of 1-pentanol and 3-pentanol.

摘要

二甘醇二乙酸酯(EGDA)具有优势性能,可作为甘油三乙酸酯(GTA)的替代品,用于各种绿色应用。我们研究了结构多样的醇在纯 EGDA 中脂肪酶介导的乙酰化反应,从而获得了一系列天然存在的芳香酸酯。我们发现,该酶体系对活化的(同)烯丙基和非活化的伯/仲醇具有高反应性和选择性。这一特点被用于可规模化生产的()-己-3-烯-1-基乙酸酯,收率为 70%。此外,Lipozyme 435/EGDA 体系还可用于(羟烷基)苯酚的化学选择性乙酰化以及手性仲醇的动力学拆分。最后,其在两种同分异构体醇等摩尔混合物的竞争实验中显示出了分辨能力。这使得从等摩尔混合物 1-戊醇和 3-戊醇中,以 68%的收率作为单一产物实际合成了 1-戊基乙酸酯。

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