首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Electronic Structure of the [Cu-3(mu-O)(3)}(2+) Cluster in Mordenite Zeolite and Its Effects on the Methane to Methanol Oxidation
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Electronic Structure of the [Cu-3(mu-O)(3)}(2+) Cluster in Mordenite Zeolite and Its Effects on the Methane to Methanol Oxidation

机译:亚硝酸酯沸石中[Cu-3(MU-O)(3)}(2+)簇的电子结构及其对甲烷氧化的影响

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摘要

Identifying Cu-exchanged zeolites able to activate C-H bonds and selectively convert methane to methanol is a challenge in the field of biomimetic heterogeneous catalysis. Recent experiments point to the importance of trinuclear [Cu-3(mu-O)(3)](2+) complexes inside the micropores of mordenite (MOR) zeolite for selective oxo-functionalization of methane. The electronic structures of these species, namely, the oxidation state of Cu ions and the reactive character of the oxygen centers, are not yet fully understood. In this study, we performed a detailed analysis of the electronic structure of the [Cu-3(mu-O)(3)](2+) site using multiconfigurational wave function-based methods and density functional theory. The calculations reveal that all Cu sites in the cluster are predominantly present in the Cu(II) formal oxidation state with a minor contribution from Cu(III), whereas two out of three oxygen anions possess a radical character. These electronic properties, along with the high accessibility of the out-of-plane oxygen center, make this oxygen the preferred site for the homolytic C-H activation of methane by [Cu-3(mu-O)(3)](2+). These new insights aid in the construction of a theoretical framework for the design of novel catalysts for oxyfunctionalization of natural gas and suggest further spectroscopic examination.
机译:识别Cu交换的沸石能够活化C-H键和选择性地转换甲烷到甲醇是在仿生多相催化领域中的挑战。最近的实验指向三核的重要性[铜 - 3(MU-O)(3)](2+)的丝光沸石(MOR)沸石用于选择性甲烷的氧官能化的微孔内的复合物。这些物种的电子结构,即,Cu离子的氧化态和氧中心的反应性性质,还没有完全理解。在这项研究中,我们使用multiconfigurational波基于函数的方法和密度泛函理论进行的电子结构的详细分析物[Cu-3(MU-O)(3)](2+)位点。计算表明,集群中的所有铜网站主要存在于Cu(Ⅱ)与来自铜(III)贡献很小形式氧化态,而三分之二的氧阴离子拥有一个激进的性格。这些电子性质,用外的平面中的氧中心的高可访问性,使得这一氧气通过均裂CH活化甲烷的优选位点[铜 - 3(MU-O)(3)](2+) 。在新型催化剂的设计天然气oxyfunctionalization的理论框架的建设,这些新的见解援助和建议进一步光谱检测。

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