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首页> 外文期刊>Journal of Applied Physics >Microstructure of nanocrystalline diamond powders studied by powder diffractometry
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Microstructure of nanocrystalline diamond powders studied by powder diffractometry

机译:粉末衍射法研究纳米晶金刚石粉的微观结构

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摘要

High resolution x-ray diffraction peaks of diamond nanosize powders of nominal sizes ranging from 5 to 250 nm were analyzed and provided information on grain structure, average size of crystallites, and concentration of dislocations. Selected samples were heat treated at 1670K at pressures 2.0 and 5.5 GPa or had surface modified by outgassing, heat treatment at vacuum conditions, and by controlled adsorption of gases. The apparent lattice parameter method was applied to characterize the structure of a shell-core model of nanosize particles. The multiple whole profile fitting provided information on crystallite sizes and density of dislocations. Population of dislocations increased with applied pressure, while strain and interplanar distances in the surface layers decreased. Adsorption of foreign gases on the grain surface modified the structure of the surface layers but did not affect dislocations near the center of the grains.
机译:分析了标称尺寸为5至250 nm的金刚石纳米尺寸粉末的高分辨率x射线衍射峰,并提供了有关晶粒结构,微晶平均尺寸和位错浓度的信息。选定的样品在1670K的压力下以2.0和5.5 GPa进行热处理,或者通过除气,在真空条件下进行热处理以及通过控制气体的吸附对表面进行改性。应用表观晶格参数法表征了纳米粒子壳核模型的结构。多个整体轮廓拟合提供了有关微晶尺寸和位错密度的信息。位错的数量随施加的压力而增加,而表层中的应变和晶面距离减小。谷物表面上异物的吸附改变了表层的结构,但并未影响晶粒中心附近的位错。

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