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Ultimate Manipulation of Magnetic Moments in the Golden Tetrahedron Au-20 with a Substitutional 3d Impurity

机译:具有替代3D杂质的金色四面体AU-20中磁矩的终极操纵

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摘要

Nanocluster systems that are electronically stable and highly magnetic have been of intense research interest due to their potential as magnetic superatoms. In this study, we consider a more intriguing case of the unique golden pyramid with a substitutional 3d impurity. In particular, we investigate the geometry, stability, and magnetic properties of Au19M clusters (M = Sc, Ti, V, Cr, Mn, Fe, Co, Ni, and Cu) by means of density functional theory calculations. It is found that the structural patterns of doped species evolve from endohedrally doped cages to exohedrally doped tetrahedrons when M goes from Sc to Cu. The robustness of the Au-20 unit tends to be retained in its tetrahedral doped counterparts. Remarkably, the quenched magnetic moment of Au-20 increases in a systematic manner with the appearance of 3d impurities. We demonstrate that not only the interaction between the magnetic impurity and valence electrons of the Au host but also the itinerant behavior of the impurity valence states have been taken into account to understand the magnetism of Au19M clusters.
机译:由于它们作为磁性超图像的潜力,纳米光栅系统具有强烈的研究兴趣。在这项研究中,我们考虑了具有替代3D杂质的独特金色金字塔的更有趣的情况。特别地,我们通过密度泛函理论计算研究Au19M簇(M = SC,Ti,V,Cr,Mn,Fe,Co,Ni和Cu)的几何形状,稳定性和磁性。发现掺杂物种的结构模式从胚乳掺杂的笼子进化到exohedrally掺杂的四边体时,当m从sc到铜时。 AU-20单元的稳健性倾向于保留在其四面体掺杂的对应物中。值得注意的是,AU-20的淬火磁矩以系统的方式增加,3D杂质的外观。我们证明,不仅考虑了Au主体的磁杂质和价电子之间的相互作用,而且考虑了杂质价态的潮断行为,以了解Au19m簇的磁性。

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