Shi Hongliang, Duan Yifeng
Nanoscale Res Lett. 2009 Feb 11;4(5):480-484. doi: 10.1007/s11671-009-9260-7.
The defect formation energies of transition metals (Cr, Fe, and Ni) doped in the pseudo-H passivated ZnO nanowires and bulk are systematically investigated using first-principles methods. The general chemical trends of the nanowires are similar to those of the bulk. We also show that the formation energy increases as the diameter of the nanowire decreases, indicating that the doping of magnetic ions in the ZnO nanowire becomes more difficult with decreasing diameter. We also systematically calculate the ferromagnetic properties of transition metals doped in the ZnO nanowire and bulk, and find that Cr ions of the nanowire favor ferromagnetic state, which is consistent with the experimental results. We also find that the ferromagnetic coupling state of Cr is more stable in the nanowire than in the bulk, which may lead to a higher T(c) useful for the nano-materials design of spintronics.
采用第一性原理方法,系统地研究了掺有过渡金属(Cr、Fe和Ni)的伪氢钝化ZnO纳米线和块体中的缺陷形成能。纳米线的一般化学趋势与块体相似。我们还表明,随着纳米线直径的减小,形成能增加,这表明随着直径减小,在ZnO纳米线中掺杂磁性离子变得更加困难。我们还系统地计算了掺有过渡金属的ZnO纳米线和块体的铁磁性能,发现纳米线中的Cr离子有利于铁磁态,这与实验结果一致。我们还发现,Cr的铁磁耦合态在纳米线中比在块体中更稳定,这可能导致对于自旋电子学纳米材料设计有用的更高居里温度。