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Introduction of Fluorine and Fluorine-Containing Functional Groups

机译:氟和含氟官能团的介绍

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Over the past decade, the most significant, conceptual advances in the field of fluorination were enabled most prominently by organo- and transition-metal catalysis. The most challenging transformation remains the formation of the parent C-F bond, primarily as a consequence of the high hydration energy of fluoride, strong metal—fluorine bonds, and highly polarized bonds to fluorine. Most fluorination reactions still lack generality, predictability, and cost-efficiency. Despite all current limitations, modern fluorination methods have made fluorinated molecules more readily available than ever before and have begun to have an impact on research areas that do not require large amounts of material, such as drug discovery and positron emission tomography. This Review gives a brief summary of conventional fluorination reactions, including those reactions that introduce fluorinated functional groups, and focuses on modern developments in the field.
机译:在过去的十年中,氟化反应领域最重要的,概念上的进步主要是通过有机金属和过渡金属催化实现的。最具挑战性的转变仍然是母体C-F键的形成,这主要是由于氟化物的高水化能,强金属-氟键以及与氟的高度极化键所致。大多数氟化反应仍缺乏通用性,可预测性和成本效益。尽管目前存在所有局限性,现代氟化方法已使氟化分子比以往更容易获得,并且已开始对不需要大量材料的研究领域产生影响,例如药物发现和正电子发射断层扫描。这篇综述简要概述了常规氟化反应,包括那些引入氟化官能团的反应,并着重介绍了该领域的现代发展。

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