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April 5, 2026The Journal of Organic Chemistry0 citations

Synthesis of Acetals via α-Diazo Sulfonium Triflate-Mediated Alcohol Functionalization

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ZLZhiyong LengMZMiaomiao ZhuoXXXike Xu

Key Points

  • This research aims to develop a new method for synthesizing acetals using α-diazo sulfonium triflates under mild conditions.
  • Utilized Rh(II) catalyst for tandem O-H insertion and nucleophilic substitution.
  • Applied acid-free conditions to minimize harsh environments.
  • Incorporated transesterification for an additional C-O bond formation.
  • Successfully formed acetals with diverse frameworks under mild conditions.
  • Enhanced functional-group tolerance compared to conventional methods.
  • Demonstrated the ability to create structurally unique acetals efficiently.

Abstract

Conventional acetal syntheses typically rely on stoichiometric amounts of strong Brønsted or Lewis acids, which often lead to harsh reaction conditions, operational complexity, and limited functional-group tolerance. Herein, we report an acid-free Rh(II)-catalyzed tandem O-H insertion/nucleophilic substitution of alcohols with α-diazo sulfonium triflates, enabling the formation of two C-O bonds under mild conditions. In this transformation, alcohols act as bifunctional nucleophiles, allowing efficient access to a diverse array of acetal frameworks. Furthermore, incorporation of a subsequent transesterification step enables the formation of a third C-O bond, providing a modular and flexible strategy for the synthesis of structurally unique acetals and further expanding the synthetic utility of diazo sulfonium salts.

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Cite This Study

Leng et al. (2026) studied this question.

synapsesocial.com/papers/69d1fdf7a79560c99a0a4666https://doi.org/10.1021/acs.joc.5c03220
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