Department of Chemical and Biomolecular Engineering, School of Energy Science and Engineering, Nanocatalysts and Nanomaterials for Sustainable Energy and, Environment Research Network of NANOTEC, Vidyasirimedhi Institute of Science and Technology, Rayong, 21210, Thailand.
Chempluschem. 2022 Jan;87(1):e202100289. doi: 10.1002/cplu.202100289. Epub 2021 Aug 31.
Various metals including Sn, Ge, and Zr have been successfully incorporated into the MFI nanosheets via a one-pot synthesis. The as-synthesized zeolites exhibit high external surface area and mesopore volume without large metal oxides aggregated on zeolite surfaces. Interestingly, the successful introduction of heteroatoms in MFI nanosheets can be confirmed by shifted XRD peaks corresponding to the unit cell expansion due to the replacement of metals into the framework. In addition, the UV-Vis absorbance spectra reveal that at the suitable metal loading the incorporated tetrahedral coordination of metal species in the zeolite framework has been obtained. To illustrate the benefits of the prepared catalysts, the glucose isomerization to fructose was carried out in a water/dioxane system. Obviously, the SnMFI-NS samples, containing the high dispersion of metal isomorphous species demonstrate the outstanding catalytic behavior in term of fructose selectivity (>85 %).
各种金属,包括 Sn、Ge 和 Zr,已通过一锅法成功掺入 MFI 纳米片中。所合成的沸石具有高的外比表面积和中孔体积,而沸石表面没有大的金属氧化物聚集。有趣的是,由于金属取代进入骨架,对应于单元晶胞膨胀的 XRD 峰的位移,可以证实 MFI 纳米片中杂原子的成功引入。此外,紫外-可见吸收光谱表明,在合适的金属负载下,沸石骨架中金属物种的四面体配位已经得到。为了说明所制备催化剂的优势,在水/二氧六环体系中进行了葡萄糖异构化为果糖的反应。显然,含有高分散金属同晶物种的 SnMFI-NS 样品在果糖选择性(>85%)方面表现出优异的催化性能。