首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Host-Guest and Guest-Guest Interactions of P- and N-Containing Structure Directing Agents Entrapped inside MFI-Type Zeolite by Multinuclear NMR Spectroscopy
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Host-Guest and Guest-Guest Interactions of P- and N-Containing Structure Directing Agents Entrapped inside MFI-Type Zeolite by Multinuclear NMR Spectroscopy

机译:通过多核NMR光谱法夹住了P-and Consob的结构指示代理的宿主和旨在的Guest-Guest-Guest互动

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Highly crystalline pure silica MFI zeolites have been synthesized using tetraethylammonium (TEA), tetraethylphosphonium (TEP), or a mixture of both cations in different proportions as organic structure directing agents (OSDAs). The zeolites have been deeply characterized in order to get insight about the guest guest interactions involving the OSDAs and the guest host interactions involving the OSDAs and the inorganic framework, as well as the main features of the resulting materials. The results show that the average size of the MFI crystals decreases when TEP is present within the zeolite and that this cation is homogeneously distributed throughout the crystallites. The multinuclear NMR investigation (H-1, C-13, N-14, F-19, Si-29, P-31) indicates that TEP interacts with the zeolite host creating higher heterogeneity of the SiO4 crystallographic sites and a diminution on the mobility of fluorine atoms incorporated into the zeolite. Moreover, the presence of TEP influences the dynamics of the nitrogen atoms of the TEA molecules, and 2D heteronuclear correlation experiments give evidence on the spatial proximity of the TEA and TEP molecules in the MFI zeolites. Then, it is concluded that TEA and TEP are intimately mixed within the zeolite voids of the pure silica MFI samples synthesized by the dual template route.
机译:高度结晶的纯硅MFI沸石已使用四乙基铵(TEA),四乙基鏻(TEP),或以不同的比例作为有机结构既阳离子导向剂(OSDAs)的混合物合成。沸石已经深深特征为了获得有关涉及OSDAs和涉及OSDAs和无机框架,以及所得到的材料的主要特点宾主互动来宾客体相互作用的洞察力。结果表明,当TEP是沸石内并且该阳离子在整个晶粒均匀分布存在于MFI晶体的平均尺寸减小。多核NMR调查(H-1,C-13,N-14,F-19,硅-29,P-31)表示与沸石主机创建的SiO 4晶体部位的更高的异质性以及在一个缩减该TEP相互作用氟原子的迁移率引入沸石。此外,TEP的存在影响TEA分子的氮原子的动力学,和2D异核相关实验给出关于在MFI沸石的TEA和TEP分子的空间接近性的证据。然后,可以得出结论,TEA和TEP由双模板途径合成的纯硅MFI样品的沸石空隙中充分混合。

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