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Applications of 129Xe and PFG NMR techniques on adsorption and diffusion of molecular sieve materials

作者:Shushu Gao, Jiamin Yuan, F. Ye, Zhiqiang Liu, A. Zheng, Shutao Xu · 发表于:Journal of Magnetic Resonance Open · 年份:2024 · DOI:10.1016/j.jmro.2024.100180 · 被引用次数:6 · 研究领域:Advanced NMR Techniques and Applications、NMR spectroscopy and applications、Zeolite Catalysis and Synthesis

• The basic principles of advanced 129 Xe NMR, HP 129 Xe NMR, 2D EXSY NMR and PFG NMR techniques were described in detail. • The distribution of guest molecules adsorbed in molecular sieves probed by 129 Xe NMR techniques were presented, ranging from the pore structure at the microscopic scale to crystal grains at the macroscopic level. • The selective adsorption and dynamic behavior in confined space of molecular sieves detected by 129 Xe NMR techniques were exhibited. • The vital role of the topology and pore connectivity in diffusion behavior of guest molecules was displayed in various molecular sieves. • The effects of adsorption and diffusion of molecules within molecular sieves on catalytic reactions are introduced. Molecular sieves possess unique properties and have emerged as the predominant catalysts with shape selectivity in the petrochemical industry because of their well-defined pore architectures. However, the existence of a constrained pore surroundings of molecular sieves can limit intracrystalline diffusion, leading to underutilization of the active volume of the molecular sieve or rapid catalysts deactivation during catalytic processes. Moreover, the mechanism of adsorption and diffusion of molecules inside molecular sieves is crucial for the optimization and advancement of catalysts in heterogeneous catalysis. Due to the complexity of the diffusion process in molecular sieve materials, it is very necessary to develop characterization methods that are more se...