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Selective Catalytic Oxidation of Cyclohexene with Molecular Oxygen: Radical Versus Nonradical Pathways

机译:分子氧对环己烯的选择性催化氧化:自由基与非自由基途径

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摘要

We study the allylic oxidation of cyclohexene with O2 under mild conditions in the presence of transition‐metal catalysts. The catalysts comprise nanometric metal oxide particles supported on porous N‐doped carbons (M/N:C, M=V, Cr, Fe, Co, Ni, Cu, Nb, Mo, W). Most of these metal oxides give only moderate conversions, and the majority of the products are over‐oxidation products. Co/N:C and Cu/N:C, however, give 70–80 % conversion and 40–50 % selectivity to the ketone product, cyclohexene‐2‐one. Control experiments in which we used free‐radical scavengers show that the oxidation follows the expected free‐radical pathway in almost all cases. Surprisingly, the catalytic cycle in the presence of Cu/N:C does not involve free‐radical species in solution. Optimisation of this catalyst gives >85 % conversion with >60 % selectivity to the allylic ketone at 70 °C and 10 bar O2. We used SEM, X‐ray photoelectron spectroscopy and XRD to show that the active particles have a cupric oxide/cuprous oxide core–shell structure, giving a high turnover frequency of approximately 1500 h−1. We attribute the high performance of this Cu/N:C catalyst to a facile surface reaction between adsorbed cyclohexenyl hydroperoxide molecules and activated oxygen species.
机译:我们研究了在过渡金属催化剂存在下,在温和条件下用O2对环己烯进行烯丙基氧化的过程。催化剂包括负载在多孔N掺杂碳(M / N:C,M = V,Cr,Fe,Co,Ni,Cu,Nb,Mo,W)上的纳米级金属氧化物颗粒。这些金属氧化物中的大多数仅产生中等程度的转化,并且大多数产物是过氧化产物。但是,Co / N:C和Cu / N:C对酮产物环己烯-2-酮的转化率为70-80%,选择性为40-50%。我们使用自由基清除剂的对照实验表明,几乎在所有情况下,氧化都遵循预期的自由基途径。令人惊讶的是,在Cu / N:C存在下的催化循环不涉及溶液中的自由基物种。该催化剂的优化可在70°C和10bar bar的氧气条件下,将> 85%的转化率转化为对烯丙基酮的选择性> 60%的转化率。我们使用SEM,X射线光电子能谱和XRD显示了活性颗粒具有氧化铜/氧化亚铜核-壳结构,并具有大约1500 h -1 的高周转频率。我们将这种Cu / N:C催化剂的高性能归因于吸附的环己烯基氢过氧化物分子与活性氧物种之间的便捷表面反应。

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