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Novel Stable Compounds in the C-H-O Ternary System at High Pressure

机译:高压C-H-O三元系中的新型稳定化合物

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摘要

The chemistry of the elements is heavily altered by high pressure, with stabilization of many new and often unexpected compounds, the emergence of which can profoundly change models of planetary interiors, where high pressure reigns. The C-H-O system is one of the most important planet-forming systems, but its high-pressure chemistry is not well known. Here, using state-of-the-art variable-composition evolutionary searches combined with quantum-mechanical calculations, we explore the C-H-O system at pressures up to 400 GPa. Besides uncovering new stable polymorphs of high-pressure elements and known molecules, we predicted the formation of new compounds. A 2CH4:3H2 inclusion compound forms at low pressure and remains stable up to 215 GPa. Carbonic acid (H2CO3), highly unstable at ambient conditions, was predicted to form exothermically at mild pressure (about 1 GPa). As pressure rises, it polymerizes and, above 314 GPa, reacts with water to form orthocarbonic acid (H4CO4). This unexpected high-pressure chemistry is rationalized by analyzing charge density and electron localization function distributions, and implications for general chemistry and planetary science are also discussed.
机译:高压严重改变了元素的化学性质,稳定了许多新的和常常是出乎意料的化合物,这些化合物的出现可以深刻改变高压占主导地位的行星内部模型。 C-H-O系统是最重要的行星形成系统之一,但其高压化学作用尚未广为人知。在这里,通过使用最新的可变组成演化搜索与量子力学计算相结合,我们探索了压力高达400 GPa的C-H-O系统。除了发现高压元素和已知分子的新稳定多晶型物外,我们还预测了新化合物的形成。 2CH4:3H2夹杂物在低压下形成,并在高达215 GPa的压力下保持稳定。预计在环境条件下高度不稳定的碳酸(H2CO3)在中等压力(约1 GPa)时会放热形成。随着压力的升高,它发生聚合并在314 GPa以上与水反应形成原碳酸(H4CO4)。通过分析电荷密度和电子局部化功能分布,可以合理地处理这种意外的高压化学反​​应,并讨论了其对一般化学和行星科学的影响。

著录项

  • 期刊名称 Scientific Reports
  • 作者单位
  • 年(卷),期 -1(6),-1
  • 年度 -1
  • 页码 32486
  • 总页数 9
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

  • 入库时间 2022-08-21 10:58:24

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