Recent advances in catalytic carbofluorination of unsaturated system via C–F bond reconstruction

Yaxin Zeng, Xufei Yan, Ying Xia
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引用次数: 0

Abstract

The distinctive properties of the fluorine atom confer significant advantages to organofluorine compounds in pharmaceuticals, agrochemicals, and materials science. A particularly promising approach for synthesizing these compounds involves atom-economical carbofluorination reactions. These reactions involve the activation of a carbon-fluorine (C–F) bond, then facilitating the incorporation of both a carbon-based fragment and a fluorine atom into an unsaturated system. The capacity to reintegrate the fluorine atom from the starting material into the final product, known as fluoride recycling via C–F bond reconstruction, is advantageous in terms of both atom and step economy. This review highlights recent advancements in catalytic C–F bond reconstruction, encompassing the background, chemical transformations, reaction scope, synthetic applications, mechanisms, and future research directions.

Abstract Image

通过 C-F 键重构催化不饱和体系羧基氟化的最新进展
氟原子的独特性质使有机氟化合物在制药、农用化学品和材料科学领域具有显著优势。合成这些化合物的一种特别有前景的方法是原子经济的碳氟化反应。这些反应涉及活化碳-氟(C-F)键,然后促进碳基片段和氟原子融入不饱和体系。通过 C-F 键重构将氟原子从起始材料中重新整合到最终产物中的能力(即氟回收),在原子和步骤经济性方面都具有优势。本综述重点介绍催化 C-F 键重构的最新进展,包括背景、化学转化、反应范围、合成应用、机理和未来研究方向。
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来源期刊
Tetrahedron chem
Tetrahedron chem Organic Chemistry
CiteScore
3.60
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27 days
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