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Stable and solubilized active Au atom clusters for selective epoxidation of cis-cyclooctene with molecular oxygen

机译:稳定且可溶的活性金原子簇用于分子氧选择性环氧化环-环辛烯

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摘要

The ability of Au catalysts to effect the challenging task of utilizing molecular oxygen for the selective epoxidation of cyclooctene is fascinating. Although supported nanometre-size Au particles are poorly active, here we show that solubilized atomic Au clusters, present in ng ml−1 concentrations and stabilized by ligands derived from the oxidized hydrocarbon products, are active. They can be formed from various Au sources. They generate initiators and propagators to trigger the onset of the auto-oxidation reaction with an apparent turnover frequency of 440 s−1, and continue to generate additional initiators throughout the auto-oxidation cycle without direct participation in the cycle. Spectroscopic characterization suggests that 7–8 atom clusters are effective catalytically. Extension of work based on these understandings leads to the demonstration that these Au clusters are also effective in selective oxidation of cyclohexene, and that solubilized Pt clusters are also capable of generating initiators for cyclooctene epoxidation.
机译:Au催化剂实现利用分子氧进行环辛烯的选择性环氧化的艰巨任务的能力令人着迷。尽管负载的纳米级Au颗粒的活性很差,但在这里我们显示了以ng ml -1 浓度存在并被衍生自氧化烃产物的配体稳定的可溶原子Au团簇。它们可以由各种金源形成。它们产生引发剂和繁殖剂,以触发自氧化反应的开始,其表观周转频率为440 s -1 ,并在整个自氧化循环中继续产生其他引发剂,而没有直接参与周期。光谱表征表明,7-8个原子簇具有催化作用。基于这些理解而扩展的工作范围表明,这些金簇对环己烯的选择性氧化也有效,而溶解的铂簇也能够产生环辛烯环氧化的引发剂。

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