首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Understanding of the High Hydrothermal Stability of the Mesoporous Materials Prepared by the Assembly of Triblock Copolymer with Preformed Zeolite Precursors in Acidic Media
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Understanding of the High Hydrothermal Stability of the Mesoporous Materials Prepared by the Assembly of Triblock Copolymer with Preformed Zeolite Precursors in Acidic Media

机译:三嵌段共聚物与预制沸石前体在酸性介质中组装制备的介孔材料的高水热稳定性的理解

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摘要

Mesoporous pure silica (MPS-9) is prepared using an assembly of preformed Silicalite-I nanoclusters with a triblock copolymer surfactant. The results of X-ray diffraction, transmission electron microscopy, and N_2 adsorption show that MPS-9 has a mesostructure that is similar to that of other mesoporous materials prepared from preformed zeolite nanoclusters, such as mesoporous aluminum silicates (MAS-7, MAS-9) and titanium silicate (MTS-9). However, MPS-9 shows weaker hydrothermal stability, in comparison to those other mesoporous materials prepared from preformed zeolite nanoclusters. On the other hand, three Al-SBA-15 samples synthesized from various routes are all much more hydrothermally stable than pure silica SBA-15. The previously proposed factors, including thicker pore walls, a disordered structure, the "salt effect", and zeolite-like connectivity, have been proven to be indeed favorable for the improvement of hydrothermal stability in this study. However, the introduction of heteroatoms (Al or Ti) in mesoporous materials is another favorable factor and can enhance the hydrothermal stability to a greater extent.
机译:介孔纯二氧化硅(MPS-9)使用预制的Silicalite-1纳米团簇与三嵌段共聚物表面活性剂组装而成。 X射线衍射,透射电子显微镜和N_2吸附的结果表明,MPS-9的介观结构类似于由预制的沸石纳米团簇制备的其他介孔材料,例如介孔硅酸铝(MAS-7,MAS- 9)和硅酸钛(MTS-9)。但是,与其他由预制沸石纳米团簇制备的介孔材料相比,MPS-9的水热稳定性较弱。另一方面,从各种途径合成的三个Al-SBA-15样品比纯二氧化硅SBA-15的水热稳定性都高得多。先前提出的因素,包括较厚的孔壁,无序的结构,“盐效应”和类似沸石的连接性,已被证明确实有利于改善水热稳定性。但是,在介孔材料中引入杂原子(Al或Ti)是另一个有利因素,可以在更大程度上增强水热稳定性。

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