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Si_xC_(1-x)O_2 alloys: A possible route to stabilize carbon-based silica-like solids?

机译:Si_xC_(1-x)O_2合金:稳定碳基二氧化硅样固体的可行途径?

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Novel extended tetrahedral forms of CO_2 have been synthesized recently under high-pressure conditions. We perform ab initio density functional theory calculations to investigate whether doping with Si can extend the stability range of such tetrahedral forms of CO_2 to ambient pressure. Calculations are performed with a simple cubic cell containing eight formula units in a β-cristobalite-like structure. Though we find that all the Si_xC_(1-x)O_2 structures considered by us are thermodynamically unstable with respect to decomposition into the end members at ambient pressures, the energy differences are small, suggesting that it might be possible for such phases to exist in metastable forms. At higher pressures, the heat of formation is found to be negative. The bonding between C and O atoms is more covalent than that between Si and O atoms. We also find indications that some C atoms may prefer three-fold coordination at low pressure.
机译:最近在高压条件下合成了新型的扩展的四面体形式的CO_2。我们执行从头算密度泛函理论计算,以研究掺杂Si是否可以将此类CO_2的四面体形式的稳定性范围扩展至环境压力。用一个简单的立方晶胞进行计算,该立方晶胞中包含八个类似β-方石英结构的分子式。尽管我们发现我们考虑的所有Si_xC_(1-x)O_2结构在环境压力下对于分解成末端成员都是热力学不稳定的,但是能量差很小,这表明这种相可能存在于亚稳形式。在较高压力下,发现地热为负。 C和O原子之间的键合比Si和O原子之间的键合更共价。我们还发现有迹象表明某些C原子可能更愿意在低压下进行三重配位。

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