Mingueza-Verdejo Paloma, Velázquez-Ojeda David, Bilanin Cristina, Garnes-Portolés Francisco, Rodríguez-Nuévalos Silvia, Pérez-Ruiz Raúl, Oliver-Meseguer Judit, Leyva-Pérez Antonio
Instituto de Tecnología Química (UPV-CSIC), Universitat Politècnica de València-Agencia Estatal Consejo Superior de Investigaciones Científicas, Avda. de los Naranjos s/n, 46022 Valencia, Spain.
Departamento de Química, Universitat Politècnica de València, Avda. de los Naranjos s/n, 46022 Valencia, Spain.
J Am Chem Soc. 2025 Sep 10;147(36):33256-33263. doi: 10.1021/jacs.5c11880. Epub 2025 Aug 27.
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.
在过去十年中,金属催化、有机催化和质子催化的羰基-烯烃/炔烃复分解反应在有机合成中变得越来越重要,但其在大规模生产过程(即连续流动过程)中的潜在应用受到缺乏通用、稳定、易于分离且无毒的固体催化剂的严重阻碍。在溶液中的催化过程中,分子尺寸的可溶性笼内的布朗斯特酸和路易斯酸位点似乎都参与其中;因此,在受限空间内的类似双功能酸性固体催化剂可能会起到所需的催化作用。我们在此表明,市售的超稳定铝硅酸盐八面沸石(H-USY沸石)在微孔通道和孔穴中含有布朗斯特酸和路易斯酸位点,能在温和的反应条件下,以合理的产率催化醛/酮与烯烃/炔烃之间的各种分子内和分子间复分解反应,反应具有多种结构模式。反应完成后,该沸石可以很容易地在间歇反应中回收并重复使用,或用于连续合成复分解产物的连续流动过程。这些结果为使用简单的固体催化剂设计羰基-烯烃/炔烃复分解反应开辟了道路。