将 Mander 试剂重新用于首次直接羰基脱氧氰化:从 1,3-二酮合成氧化烯腈

IF 2.1 3区 化学 Q2 CHEMISTRY, ORGANIC
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引用次数: 0

摘要

酮的脱氧氰化反应并不常见。最近,我们证明氰基甲酸甲酯(曼德试剂)或氰基甲酸乙酯等氰基甲酸烷基酯可以对 1,3-二酮进行脱氧氰化反应,直接生成氧代烯腈。这与这些试剂主要用于合成 β 酮(α-酰化)的典型反应性大相径庭。通过从锂碱过渡到胺碱,酰化反应的选择性从碳转移到了氧,产生了烯醇碳酸酯中间体。密度泛函理论(DFT)研究和体外实验证实了合成结果,即通过脱氧氰化合成了羰基腈。通过对反应机理的研究,发现了一系列有序的加成和消除过程,这与生成主要副产物的机理提议相一致,而副产物正是这种方法的主要缺点之一。虽然这种方法被证明是非通用的,但它代表了首次通过脱氧氰化过程直接合成氧代烯腈,从而偏离了烷基氰基甲酸酯的传统 C 选择性应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Repurposing Mander's reagent for the first direct carbonyl deoxycyanation: Synthesis of oxoalkenenitriles from 1,3-diketones

Repurposing Mander's reagent for the first direct carbonyl deoxycyanation: Synthesis of oxoalkenenitriles from 1,3-diketones

The deoxycyanation of ketones is an uncommon reaction. Recently, we demonstrated that alkyl cyanoformates, such as methyl cyanoformate (Mander's reagent) or ethyl cyanoformate, can perform deoxycyanation on 1,3-diketones to deliver oxoalkenenitriles directly. This represents a significant departure from the typical reactivity of these reagents, which are predominantly used for the synthesis of β-ketoesters (α-acylation). By transitioning from lithium bases to amine-based bases, the selectivity of the acylation shifts from carbon to oxygen, yielding an enol carbonate intermediate. Density Functional Theory (DFT) investigations and in vitro experiments corroborate the synthetic outcome, namely, the synthesis of oxonitriles via deoxycyanation. The reaction mechanism was studied, revealing a series of sequential additions and eliminations consistent with the mechanistic proposal for the generation of a major byproduct, which poses one of the main drawbacks of this method. Although this approach was proven to be non-general, it represents the first direct synthesis of oxoalkenenitriles through a deoxycyanation process, thereby deviating from the conventional C-selective applications of alkyl cyanoformates.

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来源期刊
Tetrahedron
Tetrahedron 化学-有机化学
CiteScore
3.90
自引率
4.80%
发文量
439
审稿时长
34 days
期刊介绍: Tetrahedron publishes full accounts of research having outstanding significance in the broad field of organic chemistry and its related disciplines, such as organic materials and bio-organic chemistry. Regular papers in Tetrahedron are expected to represent detailed accounts of an original study having substantially greater scope and details than that found in a communication, as published in Tetrahedron Letters. Tetrahedron also publishes thematic collections of papers as special issues and ''Reports'', commissioned in-depth reviews providing a comprehensive overview of a research area.
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