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Photoelectron spectroscopic and theoretical studies of Fem−(coronene)n (m=1,2, n=1,2) complexes

机译:Fem-(coronene)n(m = 1,2,n = 1,2)配合物的光电子光谱和理论研究

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摘要

Fem(coronene)n (m=1,2, n=1,2) cluster anions were generated by a laser vaporization source and studied by anion photoelectron spectroscopy. Density functional theory was used to calculate the structures and the spin multiplicities of those clusters as well as the electron affinities and photodetachment transitions. The calculated magnetic moments of Fe1(coronene)1 and Fe2(coronene)1 clusters suggest that coronene could be a suitable template on which to deposit small iron clusters and that these in turn might form the basis of an iron cluster-based magnetic material. Fe1(coronene)2 and Fe2(coronene)2 cluster anions and their corresponding neutrals prefer the sandwich-type structures, and the ground state structures of these clusters are all staggered sandwiches.
机译:通过激光蒸发源生成Fem(coronene)n(m = 1,2,n = 1,2)团簇阴离子,并通过阴离子光电子能谱进行研究。密度泛函理论用于计算这些簇的结构和自旋多重性,以及电子亲和力和光解离跃迁。计算得出的Fe1(coronene)1和Fe2(coronene)1团簇的磁矩表明,coronene可能是在其上沉积小铁团簇的合适模板,而这些反过来又可能构成基于铁团簇的磁性材料的基础。 Fe1(coronene)2和Fe2(coronene)2簇阴离子及其相应的中性离子偏爱三明治型结构,这些簇的基态结构均为交错三明治。

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