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January 23, 2026Organic Letters0 citations

Acylsilane as Energy Transfer Catalyst for Intermolecular 2 + 2 Cyclization of Alkenyl Triflones and Olefins

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ZGZhili GaoXLXiongxiong LuRZRuizeng Zhang

Key Points

  • To explore the effectiveness of acylsilanes as energy transfer catalysts for intermolecular [2 + 2] cyclization.
  • Utilized acylsilanes as photocatalysts for the cyclization reaction.
  • Investigated the mechanism of reaction through mechanistic studies.
  • Examined the efficiency of various substituted olefins in the cyclization process.
  • Acylsilane catalysts showed extended visible light responsiveness and enhanced activity.
  • The reaction efficiently processes mono-, di-, and trisubstituted olefins.
  • Diastereoisomers of 2-vinylpyridine derivatives were successfully separated.
  • The reaction mechanism is confirmed to proceed via an energy transfer mechanism.

Abstract

In response to the bottlenecks of traditional ketone-based photocatalysts, such as narrow visible light absorption range and nonradiative deactivation of excited states, we herein reported readily available acylsilanes as energy transfer catalysts. These catalysts exhibit extended visible light responsiveness, tunable triplet-state energy levels, and suppressed side reactions (e.g., hydrogen atom transfer) through substituent engineering. This work demonstrates that the optimized acylsilane is an effective catalyst for the intermolecular 2 + 2 cyclization of alkenyl triflones and olefins. The reaction works well with mono-, di-, and trisubstituted olefins. Notably, the diastereoisomers of all 2-vinylpyridine derivatives were efficiently separated. Mechanistic studies confirmed that the reaction proceeds through an EnT mechanism. Scaling up the reaction is feasible, and the triflone group can be easily converted into a gem-difluoroalkene.

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Cite This Study

Gao et al. (2026) studied this question.

synapsesocial.com/papers/69730fc4c8125b09b0d1f909https://doi.org/10.1021/acs.orglett.6c00042
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