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首页> 外文期刊>RSC Advances >An Fe3O4@P4VP@FeCl3 core–shell heterogeneous catalyst for aerobic oxidation of alcohols and benzylic oxidation reaction
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An Fe3O4@P4VP@FeCl3 core–shell heterogeneous catalyst for aerobic oxidation of alcohols and benzylic oxidation reaction

机译:Fe 3 O 4 @ P4VP @ FeCl 3 核壳多相催化剂,用于酒精的好氧氧化和苄基氧化反应

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A novel magnetic Fe3O4@P4VP(poly(4-vinylpyridine))@FeCl3 core–shell structure was successfully synthesized. Its Fe3O4@P4VP core was initially prepared via polymerization of 4-vinyl pyridine on the surface of Fe3O4 microspheres. The successful introduction of the FeCl3 moiety as a catalytic active site was achieved through coordination interaction between P4VP and FeCl3. The obtained Fe3O4@P4VP@FeCl3 catalyst was applied in the selective oxidation of alcohols using molecular oxygen as the oxidant. It was shown that a variety of alcohol substrates is tolerated under optimized reaction conditions. Additionally, benzylic oxidation of hydrocarbon compounds was also evaluated using Fe3O4@P4VP@FeCl3 as the catalyst and tBuOOH as the oxidant, achieving high yields and very good selectivities. The heterogeneity of the Fe3O4@P4VP@FeCl3 core–shell catalyst was tested and the initial activity was maintained after five reuses.
机译:新型磁性Fe 3 O 4 @ P4VP(聚(4-乙烯基吡啶))@ FeCl 成功地合成了 3 核-壳结构。其Fe 3 O 4 @ P4VP核最初是通过4的聚合制备的。 Fe 3 O 4 微球表面上的乙烯基吡啶。通过P4VP与FeCl 3 3 部分作为催化活性位点引入。 >。获得的Fe 3 O 4 @ P4VP @ FeCl 3 <使用分子氧作为氧化剂,将小型催化剂应用于醇的选择性氧化。结果表明,在优化的反应条件下可以耐受多种醇类底物。此外,还使用Fe 3 O 4 @ P4VP @ FeCl 评估烃类化合物的苄基氧化。 3 作为催化剂, t BuOOH作为氧化剂,实现了高收率和非常好的选择性。 Fe 3 O 4 @ P4VP @ FeCl 3 核-壳催化剂,并在重复使用五次后仍保持了初始活性。

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