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Reduced Graphene Oxide Composite with Oxidizable Manganese/Cobalt Mixed Oxide for p-Cresol Oxidation by Using Molecular Oxygen

机译:通过使用分子氧与可氧化的锰/钴混合氧化物用可氧化的锰/钴混合氧化物的还原氧化物复合物

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A composite of graphene oxide (GO) with mixed oxide (MnCo) was prepared by using a solvothermal method. During the synthesis, both the reduction of GO and growth of metal oxides took place simultaneously. The as-prepared composite material was highly selective for the liquid-phase oxidation of p-cresol to form p-hydroxybenzaldehyde in 71% yield within 1h. The composite material was characterised by SEM, X-ray photoelectron spectroscopy, high-resolution TEM and cyclic voltammetry (CV). A CV study revealed that the increase in the redox potential of the mixed oxide after being supported on GO, led to its higher activity of the catalyst for the oxidation reaction. The stability of the catalyst under the reaction conditions was studied by its successful reuse in three cycles.
机译:通过使用溶剂热法制备具有混合氧化物(MNCO)的石墨烯(GO)的复合物。 在合成期间,既同时也会发生氧化金属氧化物的降低和生长。 制备的复合材料对甲基甲酚的液相氧化是高度选择性的,以在1H内以71%的产率在71%的产率下形成p-羟基苯甲醛。 通过SEM,X射线光电子能谱,高分辨率TEM和循环伏安法(CV)的特征在于复合材料。 CV研究表明,在氧化反应的催化剂的催化剂的催化剂上增加了混合氧化物的氧化还原电位的增加导致氧化反应的催化剂的更高活性。 通过其成功再利用三个循环来研究在反应条件下催化剂的稳定性。

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