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May 6, 2026Angewandte Chemie0 citationsOpen Access

Ring‐Opening Arylation of Cyclic Diaryliodoniums via Cyclic Triaryliodanes as Aryne Precursors and Dynamic Aryl Reservoirs

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DIDaichi IkeshitaMAMao AtarashiNYNaohiko Yoshikai

Key Points

  • The aim is to explore the reactivity of cyclic diaryliodonium salts with Grignard reagents to synthesize arynes and teraryls.
  • Reaction of cyclic diaryliodonium salts with aryl Grignard reagents
  • Formation of cyclic triaryliodane as an aryne precursor
  • Spectroscopic analyses and control experiments to track intermediates
  • Investigation of regioselectivity influenced by substituents on iodonium salts
  • Generated iodine-capped teraryls with predominant meta-selectivity
  • Involvement of cyclic triaryliodane validated by trapping experiments
  • Retention of C─I bond facilitating further reactions
  • Reaction tolerates diverse aryl Grignard reagents with consistent selectivity

Abstract

ABSTRACT Cyclic diaryliodonium salts are widely employed as linchpins for constructing functionalized biaryls and as precursors to arynes under basic conditions. However, their synthetically practical engagement with strongly nucleophilic organometallic reagents has remained largely unexplored. Here we disclose a reaction between these salts and aryl Grignard reagents that delivers iodine‐capped teraryls with predominant meta ‐selectivity. In contrast to ligand coupling at iodine(III) or direct base‐induced aryne formation, the present transformation is initiated by the formation of a cyclic triaryliodane, which serves as both an aryne precursor and a dynamic aryl reservoir within a self‐propagating carbomagnesiation sequence. Spectroscopic analyses and control experiments support the involvement of the triaryliodane and reversible aryl exchange with aryl Grignard reagents, while trapping experiments intercept both aryne and terarylmagnesium intermediates. The reaction tolerates sterically and electronically diverse aryl Grignard reagents with consistent meta ‐selectivity, whereas strongly perturbing substituents on the iodonium salts can modulate the regioselectivity. The resulting iodo‐teraryls retain a versatile C─I bond amenable to further π‐extension or recyclization into cyclic iodonium architectures.

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Cite This Study

Ikeshita et al. (2026) studied this question.

synapsesocial.com/papers/69fa983604f884e66b531ef5https://doi.org/10.1002/ange.6935149
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