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High energy-resolution electron energy-loss spectroscopy and soft-x-ray emission spectroscopy studies of amorphous diamond transformed from neutron-irradiated graphite

机译:高能 - 分辨率电子能损光谱和无定形金刚石的软X射线发射光谱研究从中子辐照石墨转换

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High energy-resolution electron energy-loss spectroscopy measurements were performed for amorphous diamond (am-DIA), which was synthesized from neutron-irradiated graphite by shock compression, by using a monochromator transmission electron microscope (TEM). Soft-X-ray emission spectroscopy (SXES) measurements were performed by a wavelength-dispersive type spectrometer attached to the monochromator TEM. A volume plasmon peak of am-DIA is observed at 32.5 eV, which is a little smaller than that of crystalline diamond (c-DIA). The smaller plasmon energy of am-DIA indicates a smaller valence electron density of am-DIA than that of c-DIA. From the onset energies of the K-shell excitation and the SXES spectra, the band gap energy of am-DIA is estimated to be 4 eV, which is similar to the value, 3.9 eV, from the valence electron excitation spectrum and reported values, 3.5-4.5 eV, for the am-DIA synthesized from C_(60) fullerene by shock compression.
机译:通过使用单色仪透射电子显微镜(TEM),对非晶金刚石(AM-DIA)进行高能量 - 分辨率电子能损光谱测量测量,该无定形金刚石(AM-DIA)通过冲击压缩从中子辐照的石墨合成。通过连接到单色仪TEM的波长分散型光谱仪进行软X射线发射光谱(SXES)测量。在32.5eV中观察到AM-Dea的体积等离子体峰,其比结晶金刚石(C-DIA)小一点。 AM-DIA的较小的等离子体能量表明am-dia的较小价电子密度而不是C-Dia。从K-shell激发和SxES光谱的起始能量,am-Dia的带隙能量估计为4eV,其类似于价值,3.9eV,从价电子激发谱和报告的值, 3.5-4.5 EV,用于通过冲击压缩从C_(60)富勒烯合成的AM-DIA。

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