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Aerobic Oxidation of Thiols Catalyzed by Copper Nanoparticles Supported on Diamond Nanoparticles

机译:金刚石纳米粒子催化的铜纳米粒子催化的有氧氧化

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After purification by Fenton treatment, commercial diamond nanoparticles (NPs) are a suitable solid support for the deposition of Cu nanoparticles. Heating at 500 degrees C under hydrogen proved to be a convenient annealing process for Fenton-purified diamond NPs that decreased the population of surface carboxylic acid groups and lead to samples with average Cu particle sizes of 3-4 nm. The samples of Cu NPs supported on diamond NPs have been characterized by IR and X-ray photoelectron spectroscopy, as well as XRD and TEM. It was concluded that the samples contained Cu-0 as well as Cu-I and Cu-II species. The resulting diamond-supported Cu NPs were highly active for the selective aerobic oxidation of aromatic thiols to the corresponding disulfides, whereas aliphatic thiols exhibited much lower reactivity because of some poisoning and catalyst deactivation produced by aliphatic thiols. The Cu catalysts used for thiophenol oxidation could be reused in four consecutive runs with 4% of decrease in the catalytic activity. This Cu catalyst exhibited similar catalytic activity, but is considerably more affordable, as an analogous diamond-supported Au catalyst.
机译:通过芬顿处理纯化后,商业金刚石纳米颗粒(NPS)是沉积Cu纳米颗粒的合适固体载体。在500摄氏度下加热氢气被证明是芬顿纯化的金刚石NP的方便退火过程,其降低了表面羧酸基团的群体,并导致具有3-4nm的平均Cu粒径的样品。金刚石NPS上负载的Cu NP的样品已经表征了IR和X射线光电子能谱,以及XRD和TEM。得出结论是,样品含有Cu-0以及Cu-1和Cu-II种。所得的金刚石载体的Cu NPS非常有效地用于对相应二硫化物的芳族硫醇的选择性有氧氧化,而脂肪族硫醇由于脂族硫醇产生的一些中毒和催化剂去激活而表现出更低的反应性。用于噻吩氧化氧化的Cu催化剂可以在四个连续运行中重复使用,催化活性的4%降低。该Cu催化剂表现出类似的催化活性,但具有相当高的催化活性,作为类似的金刚石支持的Au催化剂。

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