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Solid-state nuclear magnetic resonance investigations of the nature, property, and activity of acid sites on solid catalysts

机译:固态核磁共振研究固体催化剂上酸位的性质,性质和活性

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摘要

Further progress in the field of heterogeneous catalysis depends on our knowledge of the nature and behavior of surface sites on solid catalysts and of the mechanisms of chemical reactions catalyzed by these materials. In the past decades, solid-state NMR spectroscopy has been developed to an important tool for routine characterization of solid catalysts. The present work gives a review on experimental approaches and applications of solid-state NMR spectroscopy for investigating Bronsted and Lewis sites on solid acids. Studies focusing on the generation of surface sites via post-synthesis modification routes of microporous and mesoporous materials support the development of new and the improvement of existing catalyst systems. High-temperature and flow techniques of in situ solid-state NMR spectroscopy allow a deeper insight into the mechanisms of heterogeneously catalyzed reactions and open the way for studying the activity of acidic surface sites. They help to clarify the activation of reactants on Bronsted and Lewis acid sites and improve our understanding of mechanisms affecting the selectivity of acid-catalyzed reactions.
机译:非均相催化领域的进一步进展取决于我们对固体催化剂表面位点的性质和行为的了解,以及对这些材料催化的化学反应机理的了解。在过去的几十年中,固态NMR光谱已发展成为常规表征固体催化剂的重要工具。本工作概述了用于研究固体酸上的布朗斯台德和路易斯位点的固态NMR光谱的实验方法和应用。专注于通过微孔和中孔材料的合成后修饰途径生成表面位点的研究支持新催化剂的开发和现有催化剂体系的改进。原位固态NMR光谱的高温和流动技术使人们对异相催化反应的机理有了更深入的了解,并为研究酸性表面位点的活性开辟了道路。它们有助于弄清布朗斯台德和路易斯酸位上反应物的活化,并有助于我们理解影响酸催化反应选择性的机理。

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