论文标题

对称小富勒烯二聚体的替代掺杂

Substitutional Doping of Symmetrical Small Fullerene Dimers

论文作者

Kaur, Sandeep, Sharma, Amrish, Sharma, Hitesh, Dhiman, Shobhna, Mudahar, Isha

论文摘要

磁性碳纳米结构在旋转型领域具有潜在的应用,因为它们具有有价值的磁性。对称尺寸的小富勒烯二聚体用氮(电子富)和硼(电子缺乏)原子替代,以可视化对其磁性特性的影响。相互作用的能量表明,所得的二聚体结构在能量上是有利的,因此可以在实验中形成。用N和B取代C原子后,0.5 Ub的二聚体的总磁矩有显着变化,这在状态的密度变化中也可以看到。旋转和旋转电子状态的同性恋差距具有有限的能量差,这证实了它们的磁性行为,而对于非磁性掺杂二聚体,旋转旋转状态的同型lumo间隙是变性的。光学特性表明,二聚体以光学半导体的形式行为,并且在光电设备中很有用。这些二聚体中诱导的磁性使它们引人入胜的纳米碳磁性材料。

Magnetic carbon nano-structures have potential applications in the field of spintronics as they exhibit valuable magnetic properties. Symmetrically sized small fullerene dimers are substitutional doped with nitrogen (electron rich) and boron (electron deficient) atoms to visualize the effect on their magnetic properties. Interaction energies suggests that the resultant dimer structures are energetically favourable and hence can be formed experimentally. There is significant change in the total magnetic moment of dimers of the order of 0.5 uB after the substitution of C atoms with N and B, which can also be seen in the change of density of states. The HOMO-LUMO gaps of spin up and spin down electronic states have finite energy difference which confirm their magnetic behaviour, whereas for non-magnetic doped dimers, the HOMO-LUMO gaps for spin up and down states are degenerate. The optical properties show that the dimers behave as optical semiconductors and are useful in optoelectronic devices. The induced magnetism in these dimers makes them fascinating nanocarbon magnetic materials.

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