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首页> 外文期刊>The Journal of Chemical Physics >Structural transformations in carbon under extreme pressure: Beyond diamond
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Structural transformations in carbon under extreme pressure: Beyond diamond

机译:碳在极端压力下的结构转变:超越金刚石

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High-pressure structural transformations of carbon at terapascal pressures are studied using metadynamics and ab initio methods. Diamond transforms to a mechanically stable cubic structure (P4132) at 2.5 TPa and 300 K. At 4000 K and 2 TPa, simple cubic carbon SC1 (Pm-3m) is obtained from cubic diamond. The high-pressure tetrahedrally coordinated BC8 (Ia-3) structure of carbon is obtained by decompression of the SC1 structure at 1 TPa and 5000 K. At 3000 K, with decompression of SC1 carbon to 1 TPa, two new metastable tetrahedrally coordinated structures form, MP8 (P2/c) and OP8 (Pccn) with higher density than that of cubic diamond. The results show the presence of strong kinetic effects and suggest that phase transformations and structures of carbon at extreme pressures are more complex than previously thought.
机译:使用元动力学和从头算方法研究了千帕压力下碳的高压结构转变。金刚石在2.5 TPa和300 K时转变为机械稳定的立方结构(P4132)。在4000 K和2 TPa时,从立方金刚石中获得了简单的立方碳SC1(Pm-3m)。碳的高压四面体配位BC8(Ia-3)结构是通过在1 TPa和5000 K下对SC1结构进行减压获得的。在3000 K下,将SC1碳减压至1 TPa,形成了两个新的亚稳态四面体配位结构,MP8(P2 / c)和OP8(Pccn)具有比立方金刚石更高的密度。结果表明存在强烈的动力学效应,并表明碳在极端压力下的相变和结构比以前认为的要复杂。

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