Kelly Nicole L, Borthwick Emma A L, Lawrence Gaynor B, Wheatley Paul S, Hughes Colan E, Harris Kenneth D M, Morris Russell E, Ashbrook Sharon E
School of Chemistry, EaStCHEM and Centre of Magnetic Resonance, University of St Andrews North Haugh St Andrews KY16 9ST UK
School of Chemistry, Cardiff University Park Place Cardiff CF10 3AT UK
Chem Sci. 2025 Feb 6;16(10):4245-4255. doi: 10.1039/d4sc07931k. eCollection 2025 Mar 5.
Zeolite-formation mechanisms have long been the subject of intensive study, with most work concentrating on hydrothermal mechanisms. However, non-traditional zeolite syntheses that do not rely on hydrothermal crystallisation have provided a number of new routes to interesting and unexpected new materials, but their formation mechanisms remain poorly understood. Here, we show how simultaneous liquid- and solid-state Si NMR spectroscopy can reveal the mechanism of the formation of a zeolite from a layered silicate precursor. The study provides evidence for the species that are intercalated into the layered material and establishes those that are involved in building the inter-layer, zeolitic connections as a function of time during the zeolite formation process.
沸石形成机制长期以来一直是深入研究的课题,大多数研究工作集中在水热机制上。然而,不依赖水热结晶的非传统沸石合成方法为制备有趣且出人意料的新材料提供了许多新途径,但其形成机制仍知之甚少。在此,我们展示了如何利用同步液态和固态硅核磁共振光谱揭示从层状硅酸盐前驱体形成沸石的机制。该研究为插入层状材料的物种提供了证据,并确定了在沸石形成过程中作为时间函数参与构建层间沸石连接的那些物种。