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Comparison of Lewis Acidity between Al-MCM-41 Pure Chemicals and Al-MCM-41 Synthesized from Bentonite

机译:从膨润土合成的Al-MCM-41纯化学品与Al-MCM-41之间的路易斯酸度的比较

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摘要

This study focused on the Lewis acidity of Al-MCM-41 prepared from bentonite (Al-MCM-bentonite) as silica and aluminum source simultaneously. This acidity was compared with Al-MCM-41 synthesized from pure chemicals reagents (Al-MCM-standard). Structural analysis showed that the substitution of the silicon atom by the aluminum atom decreases the structural order of Al-MCM-standard, whereas Al-MCM-bentonite has a better structural organization. The Lewis acidity of the Al-MCM-bentonite was evaluated in allylation reaction of benzaldehyde with allyltrimethylsilane and pyridine adsorption experiments. The results showed that the difference in acidity between Al-MCM-standard and Al-MCM-bentonite is due to the amount of aluminum incorporated into the framework of our mesoporous materials. According to the EDX analysis, the incorporation of aluminum in Al-MCM-standard (Si/Al = 13.47) is more important than in Al-MCM-bentonite (Si/Al = 43.64). This explains the low acidity of Al-MCM-bentonite, and the moderate yields in the allylation reactions of benzaldehyde with allyltrimethylsilane. Copyright © 2019 BCREC Group. All rights reserved
机译:这项研究的重点的Al-MCM-41的路易斯酸性从膨润土(铝-MCM-膨润土)中制备二氧化硅和铝源同时进行。此酸度用从纯的化学品的试剂(铝-MCM-标准)中合成的Al-MCM-41相比较。结构分析表明,由铝原子的硅原子的取代减小的Al-MCM-标准的结构顺序,而铝-MCM-膨润土具有更好的结构组织。在Al-MCM-膨润土的路易斯酸性的苯甲醛与烯丙基三甲基硅烷和吡啶吸附实验烯丙基化反应进行评价。结果表明,以Al-MCM-标准和Al-MCM-膨润土之间酸性差异是由于并入我们的中孔材料的框架内的铝的量。根据EDX分析,铝以Al-MCM-标准的掺入(的Si / Al = 13.47)比以Al-MCM-膨润土更重要(的Si / Al = 43.64)。这就解释了的Al-MCM-膨润土的低酸度,并且在苯甲醛与烯丙基三甲基硅烷的烯丙基化反应中的中等产率。版权所有©2019 BCRec组。版权所有

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