首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >High catalytic performance of surfactant-directed nanocrystalline zeolites for liquid-phase Friedel-Crafts alkylation of benzene due to external surfaces
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High catalytic performance of surfactant-directed nanocrystalline zeolites for liquid-phase Friedel-Crafts alkylation of benzene due to external surfaces

机译:表面活性剂导向的纳米晶沸石由于外表面对苯的液相弗里德-克来福特烷基化反应具有很高的催化性能

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Beta zeolite is known as an efficient catalyst for Friedel-Crafts alkylation. In liquid phase reactions, however, beta zeolite catalyst is often deactivated rapidly. We discovered that the maximum possible catalytic turnovers in benzene alkylation with benzyl alcohol could be increased by six times by using a beta zeolite with a nanosponge-like morphology, in comparison to bulk beta zeolites. The nanomorphic zeolite was obtained using a hydrothermal synthesis method which uses multiarnmonium surfactants as a meso-micro hierarchical structure-directing agent. The origins of the high catalytic performance were investigated by measuring the catalytic conversions after selectively poisoning acid sites located on external surfaces and in internal micropores selectively. The result indicated that the high catalytic performance was due to the alkylation reactions occurring on external surfaces. External active sites were able to perform the catalytic function even after active sites inside the zeolite micropores were deactivated. Similar results were obtained with other nanomorphic zeolites such as MFI nanosheets, MTW nanosponge and MRE nanosponge.
机译:Beta沸石被称为Friedel-Crafts烷基化的有效催化剂。然而,在液相反应中,β沸石催化剂通常迅速失活。我们发现,与散装的β型沸石相比,通过使用具有纳米海绵状形态的β型沸石,苯甲醇与苯甲醇的烷基化反应的最大可能催化转化率可以提高六倍。使用水热合成方法获得纳米形态的沸石,该方法使用多铵表面活性剂作为介观-微观分级结构导向剂。通过选择性地中毒位于外表面和内部微孔中的酸性位点后,测量催化转化率,来研究高催化性能的起源。结果表明,高催化性能是由于在外表面上发生的烷基化反应。即使在沸石微孔内部的活性位点失活之后,外部活性位点也能够执行催化功能。使用其他纳米形态的沸石如MFI纳米片,MTW纳米海绵和MRE纳米海绵也获得了相似的结果。

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