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首页> 外文期刊>Nanoscale >Assessing the relative stability of copper oxide clusters as active sites of a CuMOR zeolite for methane to methanol conversion: size matters?
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Assessing the relative stability of copper oxide clusters as active sites of a CuMOR zeolite for methane to methanol conversion: size matters?

机译:评估铜氧化物的相对稳定集群作为CuMOR沸石的活跃的网站甲烷,甲醇转化率:规模很重要吗?

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摘要

Copper-containing zeolites exhibit high activity in the direct partial oxidation of methane into methanol at relatively low temperatures. Di-and tricopper species have been proposed as active catalytic sites, with recent experimental evidence also suggesting the possibility of the formation of larger copper oxide species. Using density functional theory based global geometry optimization, we were able to identify a general trend of the copper oxide cluster stability increasing with size. For instance, the identified ground-state structures of tetra-and pentamer copper clusters of CunOn2+ and CunOn-12+ stoichiometries embedded in an 8-ring channel of mordenite exhibit higher relative stability compared to smaller clusters. Moreover, the aluminium content and localization in the zeolite pore influence the cluster's stability and its geometrical motif, which offers a perspective of tuning the properties of copper-exchanged zeolites by creating copper oxide clusters of a given structure and size. With the activity of the cluster towards methane being connected to its stability, such tuning will potentially allow the design of catalysts with engineered properties.
机译:铜的沸石具有高的活动的直接部分氧化甲烷甲醇在相对较低的温度下。tricopper物种已经被提议作为活跃催化网站,最近的实验证据也表明的可能性形成更大的铜氧化物物种。基于密度泛函理论的全球几何优化,我们可以确定一个将军氧化铜集群稳定的趋势增加与规模。确定tetra-and的基态结构五聚物铜集群CunOn2 +和CunOn-12 +化学计量学嵌入式的8-ring通道丝光沸石具有更高的相对稳定相对于小的集群。铝含量和本地化的沸石集群的稳定性及其孔隙的影响几何图案,这提供了一个角度调优copper-exchanged的属性铜氧化物沸石通过创建集群给定的结构和尺寸。对甲烷被连接到集群它的稳定性,这种调整可能会允许的催化剂的设计与改造属性。

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