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Origin of unique microstructures in nano-polycrystalline diamond synthesized by direct conversion of graphite at static high pressure

机译:石墨在静态高压下直接转化合成的纳米多晶金刚石的独特微观结构的起源

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The influence of the local stress state and crystallinity of graphite on the graphite-diamond transformation process was investigated using a laser-heated diamond anvil cell and two types of graphite samples with contrasting crystalline characteristics. The samples recovered from the experiments using highly oriented graphite (HOG) have layered structures composed of lonsdaleite and diamond arranged in a coaxial relation, indicative of their martensitic formation from graphite. The compression of HOG perpendicular to the graphite c axis results in a partial fragmentation of the original layered structure, but no clear evidence of diamond formation by the diffusion process is found even in the fragmented regions. On the other hand, the sample recovered from the experiment using mechanically milled graphite powder consists of euhedral diamond nanocrystals (size: 20-50 nm), indicating that the diamond is formed by the diffusion process. The results of the present study suggest that the graphite-diamond transformation process and the resulting microstructures are controlled mainly by the initial structure characteristics (such as crystallinity and crystallite size) of the graphite, while the influence of the local stress state in the graphite under compression is likely less significant for the formation process and the micro-texture.
机译:使用激光加热的金刚石砧盒和两种具有相反结晶特性的石墨样品,研究了石墨的局部应力状态和结晶度对石墨-金刚石转变过程的影响。使用高取向石墨(HOG)从实验中回收的样品具有层状结构,该层状结构由长方岩和金刚石以同轴关系排列,表明它们由石墨形成马氏体。垂直于石墨c轴的HOG的压缩会导致原始层状结构的部分碎裂,但是即使在碎裂的区域中也没有发现通过扩散过程形成金刚石的明确证据。另一方面,使用机械研磨的石墨粉从实验中回收的样品由共面金刚石纳米晶体(尺寸:20-50 nm)组成,表明金刚石是通过扩散过程形成的。本研究结果表明,石墨-金刚石的转变过程和所形成的微观结构主要受石墨的初始结构特征(如结晶度和微晶尺寸)的控制,而石墨的局部应力状态的影响则受石墨的影响。压缩对于形成过程和微纹理而言可能不太重要。

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