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Ru/UiO-66 Catalyst for the Reduction of Nitroarenesand Tandem Reaction of Alcohol Oxidation/Knoevenagel Condensation

机译:Ru / UiO-66还原硝基芳烃的催化剂氧化/ Knoevenagel缩合反应的串联和串联反应

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摘要

A 3.1% Ru/UiO-66 material was prepared by adsorption of RuCl3 from ethyl acetate on to MOF UiO-66, followed by reduction with NaBH4. The presence of acid–base and ox-red sites allows this 3.1% Ru/UiO-66 material acting as a bifunctional catalyst for the reduction of nitroarenes and tandem reaction of alcohol oxidation/Knoevenagel condensation. The high efficiency of 3.1% Ru/UiO-66 was demonstrated in the reduction of nitroarenes to amines. This system can be applied as a catalyst for at least six successive cycles without loss of activity. The 3.1% Ru/UiO-66 catalyst also was active in the tandem aerobic oxidation of alcohols/Knoevenagel condensation with malononitrile. However, the activity of this catalyst strongly decreased in the second cycle. A combination of physicochemical and catalytic experimental data indicated that Ru nanoparticles are the active sites both for the catalytic reduction of nitro compounds and the aerobic oxidation of alcohols. The activity for the Knoevenagel condensation reaction was from the existence of the “Zrn+–O2– Lewis acid–base”pair in the framework of UiO-66.
机译:通过将RuCl3从乙酸乙酯吸附到MOF UiO-66上,然后用NaBH4还原,制备3.1%Ru / UiO-66材料。酸碱和氧红位点的存在使这种3.1%Ru / UiO-66材料可以用作双官能催化剂,用于还原硝基芳烃和酒精氧化/ Knoevenagel缩合的串联反应。在将硝基芳烃还原为胺时,证明了3.1%Ru / UiO-66的高效率。该系统可以用作至少六个连续循环的催化剂而不会损失活性。 3.1%Ru / UiO-66催化剂在酒精的串联好氧氧化/ Knoevenagel与丙二腈的缩合反应中也具有活性。但是,该催化剂的活性在第二循环中大大降低。物理化学和催化实验数据的组合表明,Ru纳米颗粒既是硝基化合物的催化还原反应又是醇的好氧氧化反应的活性位点。 Knoevenagel缩合反应的活性来自“ Zr n + –O 2 – 路易斯酸碱”的存在在UiO-66框架中配对。

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