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Local boron environment in B-doped nanocrystalline diamond films

机译:当地环境B-doped硼纳米晶体钻石薄膜

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摘要

Thin films of heavily B-doped nanocrystalline diamond (B:NCD) have been investigated by a combination of high resolution annular dark field scanning transmission electron microscopy and spatially resolved electron energy-loss spectroscopy performed on a state-of-the-art aberration corrected instrument to determine the B concentration, distribution and the local B environment. Concentrations of ~1 to 3 at.% of boron are found to be embedded within individual grains. Even though most NCD grains are surrounded by a thin amorphous shell, elemental mapping of the B and C signal shows no preferential embedding of B in these amorphous shells or in grain boundaries between the NCD grains, in contrast with earlier work on more macroscopic superconducting polycrystalline B-doped diamond films. Detailed inspection of the fine structure of the boron K-edge and comparison with density functional theory calculated fine structure energy-loss near-edge structure signatures confirms that the B atoms present in the diamond grains are substitutional atoms embedded tetrahedrally into the diamond lattice.
机译:薄膜的严重B-doped纳米晶体钻石(B:非传染性疾病)的调查高分辨率的环形暗场的组合扫描透射电子显微镜和空间解决电子能量损失最先进的光谱表现畸变校正仪器来确定B浓度、分布和当地B环境。硼发现嵌入在个人谷物。包围一层非晶壳元素映射的B和C信号没有在这些非晶优惠嵌入的B壳或晶界之间的非传染性疾病谷物,与之前相比更多的工作宏观超导多晶B-doped钻石薄膜。精细结构的硼K-edge和比较用密度泛函理论计算好结构能量损失靠近边缘结构签名确认B原子中钻石颗粒置换原子四面体地嵌入在钻石晶格。

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