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September 10, 2025Journal of the American Chemical Society17 citationsOpen Access

Carbonyl–Olefin/Alkyne Metathesis Reactions Catalyzed by Bifunctional H-USY Zeolites

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PMPaloma Mingueza‐VerdejoDVDavid Velázquez-OjedaCBCristina Bilanin

Key Points

  • H-USY zeolites catalyze effective carbonyl-olefin and alkyne metathesis reactions, enhancing organic synthesis.
  • Reactions showed reasonable yields under mild conditions, with the zeolite being easily recoverable for reuse.
  • Both Brønsted and Lewis acid sites contribute to catalysis, enabling diverse metathesis reactions for various substrates.
  • This method facilitates the implementation of metathesis in high-volume continuous processes with simple solid catalysts.

Abstract

Metal-, organo-, and proton-catalyzed carbonyl-olefin/alkyne metathesis reactions have gained relevance in organic synthesis during the past decade, but their potential implementation in high-volume processes (i.e., in flow) is severely hampered by the lack of a general, robust, easily separable, and nontoxic solid catalyst. Both Brønsted and Lewis acid sites inside molecular-sized soluble cages seem to be involved during the catalytic process in solution; thus, a similar bifunctional acid solid catalyst, in a confined space, could play the desired catalytic role. We show here that commercially available, ultrastabilized aluminosilicate acid faujasites (H-USY zeolites), containing Brønsted and Lewis acid sites in microporous channels and cavities, catalyze a variety of intra- and intermolecular metathesis reactions between aldehydes/ketones and alkenes/alkynes, with diverse structural patterns, in reasonable yields and under mild reaction conditions. The zeolite can be easily recovered after the reaction in batch and reused or implemented in in-flow processes for continuous synthesis of the metathesis products. These results open the way to designing carbonyl-olefin/alkyne metathesis reactions with simple solid catalysts.

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Cite This Study

Mingueza‐Verdejo et al. (2025) studied this question.

synapsesocial.com/papers/68c1d5fe54b1d3bfb60f9478https://doi.org/10.1021/jacs.5c11880
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