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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Electronic structure of boron nitride nanostructures doped with a carbon atom
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Electronic structure of boron nitride nanostructures doped with a carbon atom

机译:碳原子掺杂的氮化硼纳米结构的电子结构

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摘要

We have investigated, using first-principles calculations, the role of a substitutional carbon atom on the electronic properties of boron nitride monolayers, nanotubes, and nanocones. It is shown that electron states in the energy-gap are independent of the curvature, being the same for the monolayer, for the cone and for the tube. It is also found, that the presence of carbon in the boron nitride compounds induces a spin polarization, with magnetic moment of 1.0μB, which does not depend on the curvature.
机译:我们使用第一性原理研究了取代碳原子对氮化硼单层,纳米管和纳米锥的电子性能的作用。结果表明,能隙中的电子态与曲率无关,对于单层,对于圆锥体和对于管来说,都是相同的。还发现,氮化硼化合物中碳的存在会引起自旋极化,其磁矩为1.0μB,这与曲率无关。

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