首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Ordered mesoporous alumina with ultra-large pore size catalyze cinnamaldehyde to cinnamyl alcohol with high selectivity
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Ordered mesoporous alumina with ultra-large pore size catalyze cinnamaldehyde to cinnamyl alcohol with high selectivity

机译:用超大孔径催化肉桂醛催化到肉桂醛,具有高选择性的肉桂醛

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摘要

At present, most of mesoporous alumina are synthesized by a soft template method with pore diameters of less than 10 nm, which tends to cause an amorphous structure and great limitations for the catalytic reaction. Therefore, we chose to use triblock copolymer as a template and self-assembly by solvent evaporation to synthesize an ultra-large mesoporous alumina without any pore expanding agents. The synthesized mesoporous alumina is used for the hydrogenation reaction of 4-methoxy cinnamaldehyde, and the mesoporous alumina exhibited high conversion and excellent selectivity. Compared with industrial synthesis of 4-methoxy cinnamyl alcohol, the reaction can be a complete conversion of 4-methoxy cinnamaldehyde to 4-methoxy cinnamyl alcohol without any by-products.
机译:目前,大多数介孔氧化铝由软模板方法合成,孔径小于10nm,倾向于引起无定形结构和催化反应的极大限制。 因此,我们选择使用三嵌段共聚物作为模板和自组装通过溶剂蒸发,以合成超大的介孔氧化铝而没有任何孔的膨胀剂。 合成的介孔氧化铝用于4-甲氧基肉桂醛的氢化反应,中孔氧化铝表现出高转化率和优异的选择性。 与4-甲氧基甘氨酸的工业合成相比,反应可以完全转化4-甲氧基肉桂醛至4-甲氧基肉桂醇而没有任何副产物。

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