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A mechanistic study of the Knoevenagel condensation reaction: new insights into the influence of acid and base properties of mixed metal oxide catalysts on the catalytic activity

机译:Knoevenagel缩合反应的机制研究:对混合金属氧化物催化剂酸碱性能对催化活性的新见解

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摘要

A Knoevenagel condensation reaction between benzaldehyde and ethyl cyanoacetate was performed in the liquid phase under mild and solventless conditions using a series of catalysts modified by impregnating magnesium and barium cations on different supports (SiO2, ZnO, gamma-Al2O3 and Fe2O3). The highest reaction rates and yields (after 6 hours) were observed using ZnO which possessed the highest concentration of acidic and basic sites, as determined by TPD-MS. In situ FTIR experiments show that the adsorption of ethyl cyanoacetate on ZnO results in an increase of hydroxyl intermediate species on the ZnO surface. There is evidence to suggest that the reaction proceeds via an autocatalytic pathway, as an induction period was observed before the observed catalytic activity. It was also found that both surface acidic and basic sites are necessary to obtain high rates of the catalytic reaction. By comparing the catalytic activity with the catalyst surface basicity, we are able to determine the optimum proportion of acid and base sites necessary to obtain the highest reaction rates.
机译:在温和的催化剂下在温和的和无溶剂条件下在液相中进行苯甲醛和乙基氰基乙酸乙酯的knoevenagel缩合反应,使用通过在不同的载体上浸渍镁和钡阳离子(SiO 2,ZnO,Gamma-Al2O3和Fe 2 O 3)而改性的一系列催化剂进行。使用ZnO观察到最高反应速率和产率(6小时后),其具有由TPD-MS测定的酸性和碱性位点的最高浓度的浓度。原位FTIR实验表明,氰基乙酸乙酯对ZnO的吸附导致ZnO表面上的羟基中间体物质的增加。有证据表明反应通过自催化途径进行,因为在观察到的催化活性之前观察到诱导期。还发现,表面酸性和碱性位点是获得高催化反应速率所必需的。通过将催化活性与催化剂表面碱度进行比较,我们能够确定获得最高反应速率所需的酸和基本位点的最佳比例。

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    Univ Newcastle Sch Engn Prior Res Ctr Energy Catalysis Res Lab Chem Engn Callaghan Campus Callaghan NSW 2308 Australia;

    Atodatech Llc Pasadena CA 91101 USA;

    Univ Newcastle Sch Engn Prior Res Ctr Energy Catalysis Res Lab Chem Engn Callaghan Campus Callaghan NSW 2308 Australia;

    Univ Newcastle Sch Engn Prior Res Ctr Energy Catalysis Res Lab Chem Engn Callaghan Campus Callaghan NSW 2308 Australia;

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  • 正文语种 eng
  • 中图分类 物理学;化学;
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