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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Cooperative Catalysis with Acid-Base Bifunctional Mesoporous Silica: Impact of Grafting and Co-condensation Synthesis Methods on Material Structure and Catalytic Properties
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Cooperative Catalysis with Acid-Base Bifunctional Mesoporous Silica: Impact of Grafting and Co-condensation Synthesis Methods on Material Structure and Catalytic Properties

机译:酸碱双功能介孔二氧化硅的协同催化作用:接枝和共缩合合成方法对材料结构和催化性能的影响

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摘要

The structural and cooperative catalytic characteristics of acid and base co-functionalized mesoporous silica synthesized through grafting and co-condensation methods are investigated. It is shown that incorporation of the mutually reactive amine and carboxylic acid functional groups is aided by a protecting group in the grafting method. Using a thermally cleavable protecting group on the carboxylic acid organosilane, the differential effect of silanol removal and acid group functionalization on catalytic activity is studied. For samples prepared here by both the co-condensation and grafting procedures, the removal of silanols and the introduction of the carboxylic acid has a negative impact on activity of the catalyst in aldol condensations under the conditions used here. These results demonstrate that a weaker Bronsted acid silanol is more effective in cooperatively catalyzing the aldol condensation in combination with an amine base than the stronger carboxylic acid for all the materials prepared in this study.
机译:研究了通过接枝和共缩合方法合成的酸和碱共官能化介孔二氧化硅的结构和协同催化特性。结果表明,在接枝方法中,相互反应的胺和羧酸官能团的引入是通过保护基来辅助的。在羧酸有机硅烷上使用可热裂解的保护基,研究了硅烷醇去除和酸基官能化对催化活性的不同影响。对于在此通过共缩合和接枝步骤制备的样品,在此处使用的条件下,硅烷醇的去除和羧酸的引入对醛醇缩合中催化剂的活性具有负面影响。这些结果表明,对于本研究中制备的所有材料,与较强的羧酸相比,较弱的布朗斯台德酸硅烷醇在与胺碱的组合中协同催化羟醛缩合反应更有效。

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