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Subnanometer cobalt oxide clusters as selective low temperature oxidative dehydrogenation catalysts

机译:亚纳米氧化钴团簇作为选择性低温氧化脱氢催化剂

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摘要

The discovery of more efficient, economical, and selective catalysts for oxidative dehydrogenation is of immense economic importance. However, the temperatures required for this reaction are typically high, often exceeding 400 °C. Herein, we report the discovery of subnanometer sized cobalt oxide clusters for oxidative dehydrogenation of cyclohexane that are active at lower temperatures than reported catalysts, while they can also eliminate the combustion channel. These results found for the two cluster sizes suggest other subnanometer size (CoO)x clusters will also be active at low temperatures. The high activity of the cobalt clusters can be understood on the basis of density functional studies that reveal highly active under-coordinated cobalt atoms in the clusters and show that the oxidized nature of the clusters substantially decreases the binding energy of the cyclohexene species which desorb from the cluster at low temperature.
机译:发现用于氧化脱氢的更有效,经济和选择性的催化剂具有巨大的经济意义。然而,该反应所需的温度通常很高,通常超过400℃。在本文中,我们报告了用于环己烷氧化脱氢的亚纳米级氧化钴簇的发现,该簇在比报道的催化剂更低的温度下具有活性,同时还可以消除燃烧通道。对于两个簇尺寸发现的这些结果表明,其他亚纳米尺寸(CoO)x簇也将在低温下处于活动状态。在密度泛函研究的基础上可以理解钴簇的高活性,该密度泛函研究揭示了簇中高活性的配位不足的钴原子,并表明簇的氧化性质大大降低了从中解吸的环己烯物种的结合能。集群处于低温状态。

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