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Tuning graphitic oxide for initiator- and metal-free aerobic epoxidation of linear alkenes

机译:调整石墨氧化物以用于线性烯烃的无引发剂和无金属的好氧环氧化

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Graphitic oxide has potential as a carbocatalyst for a wide range of reactions. Interest in this material has risen enormously due to it being a precursor to graphene via the chemical oxidation of graphite. Despite some studies suggesting that the chosen method of graphite oxidation can influence the physical properties of the graphitic oxide, the preparation method and extent of oxidation remain unresolved for catalytic applications. Here we show that tuning the graphitic oxide surface can be achieved by varying the amount and type of oxidant. The resulting materials differ in level of oxidation, surface oxygen content and functionality. Most importantly, we show that these graphitic oxide materials are active as unique carbocatalysts for low-temperature aerobic epoxidation of linear alkenes in the absence of initiator or metal. An optimum level of oxidation is necessary and materials produced via conventional permanganate-based methods are far from optimal.
机译:氧化石墨具有作为碳催化剂的潜力,可用于多种反应。由于该材料是通过石墨的化学氧化作用生成的石墨烯前体,因此对该材料的兴趣已大大提高。尽管有一些研究表明,选择的石墨氧化方法会影响石墨氧化物的物理性能,但对于催化应用而言,其制备方法和氧化程度仍未解决。在这里,我们表明,通过改变氧化剂的量和类型可以调节石墨氧化物的表面。所得材料的氧化程度,表面氧含量和功能不同。最重要的是,我们证明了这些石墨氧化物材料在不存在引发剂或金属的情况下,对于线性烯烃的低温好氧环氧化具有独特的碳催化剂活性。最佳的氧化水平是必要的,并且通过常规的基于高锰酸盐的方法生产的材料远非最佳。

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