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Catalytic activity of the beta zeolite with enhanced textural properties in the Friedel-Crafts acylation of aromatic compounds

机译:β沸石的催化活性具有增强的芳族化合物酰化的造成型纹理性质

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Friedel-Crafts acylation is widely used for the production of aromatic ketones applied as intermediates in both fine chemicals and pharmaceutical industries. The reaction is carried out by using conventional homogenous catalysts, which represents significant technical and environmental problems. The present work reports the results obtained in the Friedel-Crafts acylation of aromatic substrates (anisole and 2-methoxynaphthalene) catalyzed by Beta zeolite obtained by crystallization of silanized seeds. This material exhibits hierarchical porosity and enhanced textural properties. For the anisole acylation, the catalytic activity over the conventional Beta zeolite is slightly higher than with the modified Beta material, probably due to the relatively small size of this substrate and the weaker acidity of the last sample. However, the opposite occurred in the acylation of a bulky substrate (2-methoxynaphthalene), with the modified Beta showing a higher conversion. This result is interpreted due to the presence of a hierarchical porosity in this material, which favors the accessibility to the active sites.
机译:Friedel-Crafts酰化被广泛用于生产作为精细化学品和制药行业中间体的芳香酮。通过使用常规均质催化剂进行反应,这代表了显着的技术和环境问题。本作者报告了通过通过结晶硅烷化种子而获得的芳族底物(苯甲醚和2-甲氧基萘)的Friedel-Crafts酰化的结果。该材料表现出分层孔隙率和增强的纹理性质。对于苯甲醚酰化,常规β沸石上的催化活性略高于与改性β材料的略高,可能是由于该基材的尺寸相对较小的和最后一个样品的弱酸性。然而,在庞大的底物(2-甲酰氧基萘)的酰化中发生相反的是,具有改进的β显示出更高的转化率。由于这种材料中的分层孔隙率存在,该结果被解释,这有利于有效位点的可访问性。

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