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Argon tagging of doubly transition metal doped aluminum clusters: The importance of electronic shielding

机译:氩气标签双过渡金属掺杂铝簇:电子屏蔽的重要性

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摘要

The interaction of argon with doubly transition metal doped aluminum clusters, AlnTM2+ (n = 1-18, TM = V, Nb, Co, Rh), is studied experimentally in the gas phase via mass spectrometry. Density functional theory calculations on selected sizes are used to understand the argon affinity of the clusters, which differ depending on the transition metal dopant. The analysis is focused on two pairs of consecutive sizes: Al6,7V2+ and Al4,5Rh2+, the largest of each pair showing a low affinity toward Ar. Another remarkable observation is a pronounced drop in reactivity at n = 14, independent of the dopant element. Analysis of the cluster orbitals shows that this feature is not a consequence of cage formation but is electronic in nature. The mass spectra demonstrate a high similarity between the size-dependent reactivity of the clusters with Ar and H-2. Orbital interactions provide an intuitive link between the two and further establish the importance of precursor states in the reactions of the clusters with hydrogen.
机译:在气相中,通过质谱实验研究了氩与双过渡金属掺杂铝团簇AlnTM2+(n=1-18,TM=V,Nb,Co,Rh)的相互作用。利用密度泛函理论对选定尺寸的计算来理解团簇的氩亲和性,这取决于过渡金属掺杂剂。分析集中于两对连续尺寸的Al6,7V2+和Al4,5Rh2+,每对中最大的一对显示出对Ar的低亲和力。另一个显著的观察结果是,在n=14时,反应性显著下降,与掺杂元素无关。对星团轨道的分析表明,这一特征不是笼状结构的结果,而是电子性质的。质谱表明,与Ar和H-2的团簇的大小相关反应性之间具有高度的相似性。轨道相互作用在两者之间提供了直观的联系,并进一步确定了前体状态在团簇与氢反应中的重要性。

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