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Combined study of the ground and excited states in the transformation of nanodiamonds into carbon onions by electron energy-loss spectroscopy

机译:电子能谱分析法研究纳米金刚石向碳洋葱转化中的基态和激发态

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摘要

The electron momentum density and sp2/sp3 ratio of carbon materials in the thermal transformation of detonation nanodiamonds (ND) into carbon nano-onions are systematically studied by electron energy-loss spectroscopy (EELS). Electron energy-loss near-edge structures of the carbon K-ionization in the electron energy-loss spectroscopy are measured to determine the sp2 content of the ND-derived samples. We use the method developed by Titantah and Lamoen, which is based on the ability to isolate the π* spectrum and has been shown to give reliable and accurate results. Compton profiles (CPs) of the ND-derived carbon materials are obtained by performing EELS on the electron Compton scattering region. The amplitude of the CPs at zero momentum increases with increasing annealing temperature above 500 °C. The dramatic changes occur in the temperature range of 900–1300 °C, which indicates that the graphitization process mainly occurs in this annealing temperature region. Our results complement the previous work on the thermal transformation of ND-derived carbon onions and provide deeper insight into the evolution of the electronic properties in the graphitization process.
机译:通过电子能量系统研究了爆轰纳米金刚石(ND)热转变为碳纳米洋葱时碳材料的电子动量密度和sp 2 / sp 3 比。损耗光谱法(EELS)。测量电子能量损失谱中碳K电离的电子能量损失近边缘结构,以确定ND衍生样品的sp 2 含量。我们使用Titantah和Lamoen开发的方法,该方法基于分离π * 光谱的能力,并已显示出可靠且准确的结果。 ND衍生碳材料的康普顿分布(CPs)是通过在电子康普顿散射区域上执行EELS获得的。当退火温度高于500 C时,零动量处的CP振幅会增加。剧烈变化发生在900–1300 C的温度范围内,这表明石墨化过程主要发生在该退火温度区域。我们的研究结果补充了以前对ND衍生碳洋葱进行热转化的工作,并提供了对石墨化过程中电子性能演变的更深入了解。

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