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采用局域密度近似下的密度泛函理论和原子轨道的线性组合方法,通过离散变分法自洽求解Kohn-Sham方程,详细地研究了FenB(n≤6)团簇的结构和磁性,所得主要结论如下:第一,B原子更倾向于在团簇的表面而不是在团簇的内部,通常计算非晶态的四面体结构和三棱柱结构,对于孤立团簇而言是不稳定的,这说明环境对团簇的结构稳定性有重要影响;第二,当Fen+1团簇中的一个Fe原子被B原子取代形成Fen团簇时,其结合能增大而Fe原子的磁矩减小;第三,Fe< 相似文献
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ELECTRONIC STRUCTURE AND CRYSTALLINE ELECTRIC FIELD IN Rco5(R= Y,La, Ce,Pr, Nd,Sm, Gd,and Tb) 下载免费PDF全文
Self consistent charge and spin polarized local spin-density approximation functional theory calculations based on the discrete variational method have been performed for RCo5(R=Y, La, Ce, Pr, Nd, Sm, Gd, and Tb) compounds. The partial density of states of the Pr atom in the PrCo6Co12 cluster is established to be strikingly similar to that of the Ce atom in the CeCo6Co12 cluster, supporting the suggestion that the Pr atom is valence fluctuating. The radii <r4f> and <r4f2> of the 4f electrons of the R atom from La to Tb, except Ce, show the lanthanide contraction. The crystalline electric field (CEF) parameter A02 at the R site is calculated using a real charge distribution ρ(R) in the cluster, except for Pr and Nd, and is in agreement with that evalu ated based on the single-ion model. This result shows that the CEF parameter A02 is mainly determined by the near electronic structure. There exists a hybridization in a certain degree between the light rare-earth R-4f and Co-3d orbitals in some single-electron-molecular-orbitals, which are n ear the Fermi energy level and occupied by electrons. For light rare-earths the R-4f electrons in R Co6Co12(R=Y, La, Ce, Pr, Nd, and Sm) clu sters are not localized entirely and a small amount of the R-4f electrons have itinerant properties. 相似文献
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采用密度泛函理论和离散变分方法,以Ih结构的Cu12TM团簇为对象(TM:Sc,Ti,V,Cr,Mn,Fe,Co,Ni,Y,Zr,Nb,Mo,Tc,Ru,Rh,Pd,Ag),系统地研究了杂质TM的局域磁矩及其形成机理,发现杂质TM在Cl12中的局域磁性行为与在块体Cu中及在Al12.团簇中的行为明显不同.除Cr和Mo的磁矩被淬灭为零外,其他的杂质都是磁性的.与杂质在块体d带衬底中的d-d相互作用图象相比,发现在团簇中存在着更为复杂的相互作用,它们影响着杂质的局域磁矩.其中Cu原子的s轨道与杂质原子之间的相互作用对3d和4d杂质的磁矩有重要贡献;Cu原子的p轨道与杂质原子的相互作用对Mn,Fe,Co,Ni,Tc,Ru,Rh的磁矩有关键性影响;Cu原子的d轨道与杂质之间的相互作用对Sc,Ti,V,Y,Zr,Nb的磁矩有关键性影响. 相似文献
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