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First-principles studies on graphene-supported transition metal clusters

机译:石墨烯负载过渡金属簇的第一性原理研究

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摘要

Theoretical studies on the structure, stability, and magnetic properties of icosahedral TM13 (TM = Fe, Co, Ni) clusters, deposited on pristine (defect free) and defective graphene sheet as well as graphene flakes, have been carried out within a gradient corrected density functional framework. The defects considered in our study include a carbon vacancy for the graphene sheet and a five-membered and a seven-membered ring structures for graphene flakes (finite graphene chunks). It is observed that the presence of defect in the substrate has a profound influence on the electronic structure and magnetic properties of graphene-transition metal complexes, thereby increasing the binding strength of the TM cluster on to the graphene substrate. Among TM13 clusters, Co-13 is absorbed relatively more strongly on pristine and defective graphene as compared to Fe-13 and Ni-13 clusters. The adsorbed clusters show reduced magnetic moment compared to the free clusters.
机译:在梯度校正后,对沉积在原始(无缺陷)和有缺陷的石墨烯片以及石墨烯薄片上的二十面体TM13(TM = Fe,Co,Ni)簇的结构,稳定性和磁性能进行了理论研究。密度功能框架。我们研究中考虑的缺陷包括石墨烯片的碳空位和石墨烯薄片(有限的石墨烯块)的五元和七元环结构。观察到,衬底中缺陷的存在对石墨烯-过渡金属配合物的电子结构和磁性具有深远的影响,从而增加了TM簇在石墨烯衬底上的结合强度。在TM13簇中,与Fe-13和Ni-13簇相比,Co-13在原始和有缺陷的石墨烯上的吸收相对较强。与自由簇相比,吸附的簇显示出减小的磁矩。

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