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由甲醛进行糖醛和甘油醛的益生元合成:对甲醛聚糖反应初始步骤的计算研究

Prebiotic Synthesis of Glycolaldehyde and Glyceraldehyde from Formaldehyde: A Computational Study on the Initial Steps of the Formose Reaction.

作者信息

Venturini Alessandro, González Javier

机构信息

Institute of Organic Synthesis and Photoreactivity (ISOF), National Research Council of Italy, Via P. Gobetti 101, 40129, -Bologna, Italy.

Departamento de Química Orgánica e Inorgánica, Universidad de Oviedo, c/ Julián Clavería 8, 33006-, Oviedo, Spain.

出版信息

Chempluschem. 2024 Mar;89(3):e202300388. doi: 10.1002/cplu.202300388. Epub 2023 Nov 6.

Abstract

In this work, the initial steps of the mechanism of the Formose reaction (FR) is computationally studied using DFT methods. The FR has been considered to be a relevant process in the prebiotic evolution leading to several types of sugars or carbohydrates. These molecules are some of the basic building blocks of the life. The dimerization of formaldehyde was found to take place via an intramolecular deprotonation reaction, leading to the formation of an intermediate which, after an isomerization, forms a Ca-complex of the cis-enediol tautomer of glycolaldehyde. The aldol reaction of this complex with additional formaldehyde gave glyceraldehyde, the simplest aldotriose. The catalyst Ca(OH) plays a dual role in the reaction, acting as a base (in the intramolecular deprotonation) and as Lewis acid (activating the carbonyl group) in the aldol addition.

摘要

在本工作中,利用密度泛函理论(DFT)方法对福尔摩斯反应(FR)机理的初始步骤进行了计算研究。福尔摩斯反应被认为是前生物进化过程中的一个相关过程,可产生多种类型的糖或碳水化合物。这些分子是生命的一些基本组成部分。发现甲醛的二聚化通过分子内去质子化反应发生,导致形成一种中间体,该中间体在异构化后形成乙醇醛顺式烯二醇互变异构体的钙络合物。该络合物与额外的甲醛发生羟醛反应生成甘油醛,即最简单的醛糖。催化剂Ca(OH)在反应中起双重作用,在分子内去质子化中作为碱,在羟醛加成中作为路易斯酸(活化羰基)。

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