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Insights into the mechanochemical synthesis of Sn-beta: Solid-state metal incorporation in beta zeolite

机译:对Sn-β的机械化学合成的见解:β沸石中固态金属掺入

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Sn-beta zeolite is an active material for the isomerization of glucose to fructose, which is one of the critical reactions for the valorization of biomass. The material is synthesized either by a top-down or bottom-up approach. In this work, we use a top-down approach for the synthesis of Sn-beta to incorporate the tin atoms into the *BEA frame-work. As compared to the literature, we replace the process of manual grinding with the use of ball milling to make the process reproducible, flexible, and scalable. The primary focus of this work is to investigate the processes occurring during the synthesis by a variety of characterization tools. These techniques include thermogravimetric analysis (TGA), X-ray photoelectron spectroscopy (XPS), X-ray absorption spectroscopy (XAS), physisorption, X-ray diffraction (XRD), and chemisorption monitored by Fourier-transform infrared spectroscopy (FTIR). The synthesis is followed by characterizing the material at various stages of synthesis. Finally, the materials are tested for the isomerization of glucose to fructose to assess the chemical nature of Sn-beta zeolites. The results of this investigation provide several insights into the mechanochemical process for the incorporation of atoms in a zeolite framework. For instance, the importance of the size of precursors, distribution of Sn atoms during synthesis, and chemical changes occurring during milling are highlighted. These insights could produce a blueprint for the synthesis of a variety of solid catalysts.
机译:Sn-β沸石是葡萄糖异构化的活性物质,其是果糖的浓度之一。通过自上而下或自下而上的方法合成材料。在这项工作中,我们使用自上而下的方法来合成Sn-Beta以将锡原子掺入* BEA帧工作中。与文献相比,我们通过使用球磨来取代手动研磨过程,使工艺可重复,灵活,可扩展。这项工作的主要重点是研究通过各种特征工具在合成过程中发生的过程。这些技术包括热重分析(TGA),X射线光电子能谱(XPS),X射线吸收光谱(XAS),物理吸附,X射线衍射(XRD),并通过傅立叶变换红外光谱(FTIR)监测的化学吸附。然后通过在合成的各个阶段表征材料的性能。最后,测试材料以对葡萄糖的异构化进行测试,以评估Sn-β沸石的化学性质。该研究的结果为机械化学方法提供了几种见解,以在沸石框架中掺入原子。例如,突出了在合成期间Sn原子的尺寸,在铣削期间发生的化学变化的重要性。这些见解可以产生用于合成各种固体催化剂的蓝图。

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