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Role of Lewis-Base-Coordinated Halogen(I) Intermediates in Organic Synthesis: The Journey from Unstable Intermediates to Versatile Reagents

机译:Lewis-Base-Coordination卤素(I)中间体在有机合成中的作用:从不稳定中间体对通用试剂的旅程

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摘要

The widespread use of halogen-based reagents in organic synthesis is well known. Hypervalent halogens (oxidation states III and V) have been explored to a significant extent. Among them, hypervalent iodine reagents have found major use and applications. In contrast, understanding of the reactivity of halogen(I) species in the presence of Lewis bases, and their reaction mechanisms, are very limited. This microreview sheds light on the importance of halogen(I) species and their applications in organic synthesis. In commercially available halogen(I) precursors such as N-halosuccinimides, the halogen atom is attached to the nitrogen atom through a covalent bond with low electrophilicity and thus low reactivity. Interestingly, the reactivity increases if the electrophilic halogen(I) atom is attached to a Lewis base through a polarized covalent bond. The halogen-bonding interaction between the Lewis base and the halonium ion (or halonium ion equivalent) results in highly reactive and thermodynamically stable halogen(I) intermediates that act as versatile reagents. This microreview unravels the evolution of the unstable halogen(I) intermediates to become versatile reagents.
机译:在有机合成中广泛使用卤素的试剂是众所周知的。在很大程度上探讨了高效卤素(氧化状态III和V)。其中,毛细血症碘试剂已发现主要使用和应用。相反,了解Lewis碱存在下卤素(I)物种的理解及其反应机制非常有限。此微展揭示了卤素(I)种的重要性及其在有机合成中的应用。在市售的卤素(I)前体如N-卤素琥珀酰亚胺,通过具有低亲电性的共价键与氮原子连接到氮原子中,从而低反应性。有趣的是,如果电泳卤素(I)原子通过偏振共价键连接到Lewis碱基,则反应性增加。 Lewis碱和卤离子(或卤离子当量)之间的卤素键合相互作用导致充分的反应性和热力学稳定的卤素(I)中间体,其充当多功能试剂。该微脉冲揭开不稳定卤素(I)中间体变为多功能试剂的演变。

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