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探索卤键在碘鎓叶立德中的作用:对意外反应性和反应控制的见解。

Exploring the role of halogen bonding in iodonium ylides: insights into unexpected reactivity and reaction control.

作者信息

Montgomery Carlee A, Murphy Graham K

机构信息

Department of Chemistry, University of Waterloo, 200 University Ave W., Waterloo, Ontario, N2L3G1, Canada.

出版信息

Beilstein J Org Chem. 2023 Aug 7;19:1171-1190. doi: 10.3762/bjoc.19.86. eCollection 2023.

Abstract

Halogen bonding is commonly found with iodine-containing molecules, and it arises when Lewis bases interact with iodine's σ-holes. Halogen bonding and σ-holes have been encountered in numerous monovalent and hypervalent iodine-containing compounds, and in 2022 σ-holes were computationally confirmed and quantified in the iodonium ylide subset of hypervalent iodine compounds. In light of this new discovery, this article provides an overview of the reactions of iodonium ylides in which halogen bonding has been invoked. Herein, we summarize key discoveries and mechanistic proposals from the early iodonium ylide literature that invoked halogen bonding-type mechanisms, as well as recent reports of reactions between iodonium ylides and Lewis basic nucleophiles in which halogen bonding has been specifically invoked. The reactions discussed herein are organized to enable the reader to build an understanding of how halogen bonding might impact yield and chemoselectivity outcomes in reactions of iodonium ylides. Areas of focus include nucleophile σ-hole selectivity, and how ylide structural modifications and intramolecular halogen bonding (e.g., the -effect) can improve ylide stability or solubility, and alter reaction outcomes.

摘要

卤键常见于含碘分子中,当路易斯碱与碘的σ-空穴相互作用时就会产生卤键。在众多单价和高价含碘化合物中都发现了卤键和σ-空穴,2022年,通过计算证实并量化了高价碘化合物的碘鎓叶立德子集中的σ-空穴。鉴于这一新发现,本文概述了已涉及卤键的碘鎓叶立德的反应。在此,我们总结了早期碘鎓叶立德文献中那些援引卤键型机理的关键发现和机理推测,以及近期专门援引卤键的碘鎓叶立德与路易斯碱亲核试剂之间反应的报道。本文所讨论的反应经过整理,以便读者了解卤键如何影响碘鎓叶立德反应中的产率和化学选择性结果。重点关注的领域包括亲核试剂σ-空穴选择性,以及叶立德结构修饰和分子内卤键(如-效应)如何提高叶立德稳定性或溶解性,并改变反应结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bfc/10428621/12aac9d21f61/Beilstein_J_Org_Chem-19-1171-g002.jpg

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