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The metallicity of B-doped diamond surface by first-principles study

机译:通过第一性原理研究掺B金刚石表面的金属性

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The first-principles study is performed to boron-doped diamond (100) and (111) surface structures,respectively. The total energy values of the relaxed structures indicate that the more stable structure can beobtained for diamond (100) structure when the carbon atoms in the surface few layers are substituted byboron atoms; while for diamond (111) structure, the boron atoms have a more uniform distribution in it.From the calculated energy band structures we can find an obvious insulator-metal transition with thedoping of boron atoms, which is in good agreement with previous experimental and theoretical studies. Ourcalculated results also indicate that not only the boron concentration, but also the sites of the boron atoms indiamond can affect the stability and metal-insulator transition of boron-doped diamond.
机译:分别对掺硼金刚石(100)和(111)表面结构进行了第一性原理研究。弛豫结构的总能量值表明,当表面几层中的碳原子被硼原子取代时,对于金刚石(100)结构可以获得更稳定的结构。从金刚石的(111)结构中,硼原子的分布更加均匀。从计算得到的能带结构中,我们可以发现掺杂硼原子的明显的绝缘体-金属跃迁,与以往的实验和理论相吻合。学习。我们的计算结果还表明,不仅硼浓度,而且菱形原子中的硼原子位置也会影响掺硼金刚石的稳定性和金属-绝缘体的转变。

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