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Nanosecond formation of diamond and lonsdaleite by shock compression of graphite

机译:石墨的冲击压缩可形成纳秒级的金刚石和长石

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摘要

The shock-induced transition from graphite to diamond has been of great scientific and technological interest since the discovery of microscopic diamonds in remnants of explosively driven graphite. Furthermore, shock synthesis of diamond and lonsdaleite, a speculative hexagonal carbon polymorph with unique hardness, is expected to happen during violent meteor impacts. Here, we show unprecedented in situ X-ray diffraction measurements of diamond formation on nanosecond timescales by shock compression of pyrolytic as well as polycrystalline graphite to pressures from 19 GPa up to 228 GPa. While we observe the transition to diamond starting at 50 GPa for both pyrolytic and polycrystalline graphite, we also record the direct formation of lonsdaleite above 170 GPa for pyrolytic samples only. Our experiment provides new insights into the processes of the shock-induced transition from graphite to diamond and uniquely resolves the dynamics that explain the main natural occurrence of the lonsdaleite crystal structure being close to meteor impact sites.
机译:自从在爆炸驱动的石墨残余物中发现微观金刚石以来,从石墨到金刚石的激振诱导转换就引起了极大的科学技术兴趣。此外,预计在剧烈的流星撞击期间会发生金刚石和朗斯代尔岩的冲击合成,这是一种具有独特硬度的推测性六方碳多晶型物。在这里,我们展示了通过热解以及多晶石墨的冲击压缩至19 GPa至228 GPa的压力,在纳秒级时域上空前的金刚石形成的原位X射线衍射测量。虽然我们观察到热解石墨和多晶石墨都从50 GPa开始过渡到金刚石,但我们也仅在热解样品中记录了在170 GPa以上直接形成隆斯达莱石。我们的实验提供了从冲击到石墨到金刚石过渡过程的新见解,并独特地解决了动力学问题,这些动力学现象解释了隆斯达莱石晶体结构的主要自然现象是靠近流星撞击点。

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