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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Local fluctuations in the transformation to amorphous diamond from neutron-irradiated graphite and C$_{mathrm{60}}$ fullerenes under shock-compression
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APS -APS March Meeting 2017 - Event - Local fluctuations in the transformation to amorphous diamond from neutron-irradiated graphite and C$_{mathrm{60}}$ fullerenes under shock-compression

机译:APS -APS 2017年3月会议-事件-受到冲击压缩的中子辐照石墨和C $ _ {mathrm {60}} $富勒烯向无定形钻石转变的局部波动

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Shock compression and rapid quenching (SCARQ) technique is a unique method to obtain metastable carbon materials, transformed from initial carbon phase in a flash. Here, we report local fluctuations in the transformation to amorphous diamond from neutron-irradiated highly oriented pyrolitic graphite (HOPG) and C$_{mathrm{60}}$ fullerene under SCARQ. For the recovered sample of neutron irradiated graphite, we found an appearance of domain boundary between optically transparent and opaque areas. Raman spectroscopy revealed that the transparent and the opaque areas correspond to transformed and untransformed areas, suggesting some martensitic transformation in the highly disordered structure of neutron irradiated graphite. For C$_{mathrm{60}}$ fullerene film, on the other hand, we recovered platelets after SCARQ at 52 GPa and observed a small Raman peak of diamond with a background of photo luminescence utilizing 488 nm excitation. The peak shape changed depending on the area or the platelets. Peak fitting revealed that the diamond Raman peak shifts to lower frequency with increasing the peak width and decreasing the peak intensity, indicating local fluctuations in the structure of the recovered sample.
机译:冲击压缩和快速淬火(SCARQ)技术是一种获得亚稳态碳材料的独特方法,该材料从瞬间的初始碳相转变而来。在这里,我们报告了在SCARQ下,中子辐照的高取向热解石墨(HOPG)和C $ _ {mathrm {60}} $富勒烯向非晶态金刚石转变的局部波动。对于回收的中子辐照石墨样品,我们发现在光学透明和不透明区域之间出现畴边界。拉曼光谱显示,透明和不透明区域分别对应于已转变和未转变的区域,这表明中子辐照石墨的高度无序结构中存在一些马氏体转变。另一方面,对于C $ _ {mathrm {60}} $富勒烯薄膜,我们在SCARQ后以52 GPa的压力回收了血小板,并观察到一个小的拉曼峰,其金刚石具有488 nm激发的光致发光背景。峰形根据面积或血小板而变化。峰拟合显示金刚石拉曼峰随着峰宽的增加和峰强度的降低而移至较低频率,表明回收样品的结构存在局部波动。

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