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来自撞击坑的天然纯纳米多晶金刚石的出现。

Natural occurrence of pure nano-polycrystalline diamond from impact crater.

作者信息

Ohfuji Hiroaki, Irifune Tetsuo, Litasov Konstantin D, Yamashita Tomoharu, Isobe Futoshi, Afanasiev Valentin P, Pokhilenko Nikolai P

机构信息

Geodynamics Research Center, Ehime University, Matsuyama, Ehime 790-8577, Japan.

Earth-Life Science Institute, Tokyo Institute of Technology, Tokyo 152-8550, Japan.

出版信息

Sci Rep. 2015 Oct 1;5:14702. doi: 10.1038/srep14702.

Abstract

Consolidated bodies of polycrystalline diamond with grain sizes less than 100 nm, nano-polycrystalline diamond (NPD), has been experimentally produced by direct conversion of graphite at high pressure and high temperature. NPD has superior hardness, toughness and wear resistance to single-crystalline diamonds because of its peculiar nano-textures, and has been successfully used for industrial and scientific applications. Such sintered nanodiamonds have, however, not been found in natural mantle diamonds. Here we identified natural pure NPD, which was produced by a large meteoritic impact about 35 Ma ago in Russia. The impact diamonds consist of well-sintered equigranular nanocrystals (5-50 nm), similar to synthetic NPD, but with distinct [111] preferred orientation. They formed through the martensitic transformation from single-crystal graphite. Stress-induced local fragmentation of the source graphite and subsequent rapid transformation to diamond in the limited time scale result in multiple diamond nucleation and suppression of the overall grain growth, producing the unique nanocrystalline texture of natural NPD. A huge amount of natural NPD is expected to be present in the Popigai crater, which is potentially important for applications as novel ultra-hard material.

摘要

晶粒尺寸小于100纳米的多晶金刚石聚集体,即纳米多晶金刚石(NPD),已通过在高温高压下将石墨直接转化而实验制备出来。由于其独特的纳米结构,NPD比单晶金刚石具有更高的硬度、韧性和耐磨性,并已成功应用于工业和科学领域。然而,在天然地幔金刚石中尚未发现这种烧结纳米金刚石。在此,我们鉴定出了天然纯NPD,它是约3500万年前在俄罗斯由一次大型陨石撞击产生的。这些冲击金刚石由烧结良好的等粒纳米晶体(5 - 50纳米)组成,类似于合成NPD,但具有明显的[111]择优取向。它们通过单晶石墨的马氏体转变形成。应力诱导源石墨的局部破碎,并在有限的时间尺度内随后快速转变为金刚石,导致多个金刚石成核并抑制整体晶粒生长,从而产生了天然NPD独特的纳米晶体结构。预计在波皮盖陨石坑中存在大量天然NPD,这对于作为新型超硬材料的应用可能具有重要意义。

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