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Electronic and magnetic properties of endohedrally doped fullerene Mn@C-60: A total energy study

机译:内掺富勒烯Mn @ C-60的电子和磁性:总能量研究

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We perform total energy calculations on a manganese atom encapsulated inside a C-60 cage using density functional theory with the generalized gradient approximation through three optimization schemes and along four paths inside the cage. We find that when Mn is located in the central region, its electronic and magnetic properties are not exactly the same as those of a free Mn atom due to weak coupling between Mn and the cage. As Mn is shifted toward to the edge, the total energy and spin start to change significantly when Mn is situated about one-third of the way between the cage center and edge, and the total energy reaches a local minimum. Finally the interaction between Mn and the cage turns repulsive as Mn approaches the edge. We also find that, along the lowest energy path, there exist three consecutive local energy minima and each of these has a different spin M. The ground state has the lowest M=3, Mn is located about 1.6 angstrom away from the cage center, and the binding energy is 0.08 eV. We attribute the decrease in total energy and spin to Mn and C hybridization. (C) 2008 American Institute of Physics.
机译:我们使用密度泛函理论,通过三种优化方案并沿着笼子内部的四个路径,使用广义梯度近似对封装在C-60笼子中的锰原子进行总能量计算。我们发现,当Mn位于中心区域时,由于Mn与笼的耦合较弱,其电子和磁性与自由Mn原子的电子和磁性并不完全相同。当Mn向边缘移动时,当Mn位于保持架中心和边缘之间的距离的三分之一处时,总能量和自旋开始显着变化,并且总能量达到局部最小值。最终,当Mn接近边缘时,Mn与保持架之间的相互作用变得排斥。我们还发现,沿着最低能量路径,存在三个连续的局部能量最小值,并且每个局部能量最小值具有不同的自旋M。基态的最低M = 3,Mn位于距笼中心约1.6埃的位置,结合能为0.08 eV。我们将总能量的下降归因于锰和碳的杂化。 (C)2008美国物理研究所。

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