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Mesoporous inorganic salts with crystal defects: unusual catalysts and catalyst supports

机译:具有晶体缺陷的中孔无机盐:不寻常的催化剂和催化剂载体

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摘要

We proposed a strategy to synthesize mesoporous inorganic salt particles using the special properties of ionic liquid (IL) mixtures, and hollow mesoporous LaF3, NdF3, and YF3 particles were synthesized and characterized using different techniques. The size of the mesopores in the salt particles was about 4 nm, and the materials were full of crystal defects. The LaF3, NdF3 and YF3 particles were used as the catalysts for the cyanosilylation reaction of benzaldehyde using trimethylsilyl cyanide, and Ru/LaF3 and Ru/NdF3, in which Ru nanocatalysts were supported on the LaF3 and NdF3 particles with mesopores, were used to catalyze hydrogenations of benzene to cyclohexane and levulinic acid (LA) to γ-valerolactone (GVL). It was discovered that the activities of these catalysts were unprecedentedly high for these reactions. Detailed study showed that both the crystal defects and the mesopores in the salt particles played crucial roles for the extremely high catalytic activity.
机译:我们提出了一种利用离子液体(IL)混合物的特殊性能合成介孔无机盐颗粒的策略,并使用不同的技术合成并表征了中空介孔LaF3,NdF3和YF3颗粒。盐颗粒中的中孔的尺寸为约4nm,并且材料充满晶体缺陷。 LaF3,NdF3和YF3颗粒用作三甲基甲硅烷基氰化物进行苯甲醛氰基甲酰化反应的催化剂,Ru / LaF3和Ru / NdF3负载在RuF3上,Ru纳米催化剂负载在LaF3上,NdF3颗粒具有中孔苯加氢成环己烷,乙酰丙酸(LA)加氢成γ-戊内酯(GVL)。已经发现这些催化剂的活性对于这些反应是前所未有的高。详细研究表明,盐颗粒中的晶体缺陷和中孔都对极高的催化活性起着至关重要的作用。

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