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High-Pressure Phase Diagrams of Na 2 CO 3 and K 2 CO 3

机译:Na 2 CO 3和K 2 CO 3的高压相图

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The phase diagrams of Na 2 CO 3 and K 2 CO 3 have been determined with multianvil (MA) and diamond anvil cell (DAC) techniques. In MA experiments with heating, γ -Na 2 CO 3 is stable up to 12 GPa and above this pressure transforms to P 6 3 /mcm-phase. At 26 GPa, Na 2 CO 3 - P 6 3 /mcm transforms to the new phase with a diffraction pattern similar to that of the theoretically predicted Na 2 CO 3 - P 2 1 /m. On cold compression in DAC experiments, γ -Na 2 CO 3 is stable up to the maximum pressure reached of 25 GPa. K 2 CO 3 shows a more complex sequence of phase transitions. Unlike γ Na 2 CO 3 , γ -K 2 CO 3 has a narrow stability field. At 3 GPa, K 2 CO 3 presents in the form of the new phase, called K 2 CO 3 -III, which transforms into another new phase, K 2 CO 3 -IV, above 9 GPa. In the pressure range of 9–15 GPa, another new phase or the mixture of phases III and IV is observed. The diffraction pattern of K 2 CO 3 -IV has similarities with that of the theoretically predicted K 2 CO 3 - P 2 1 /m and most of the diffraction peaks can be indexed with this structure. Water has a dramatic effect on the phase transitions of K 2 CO 3 . Reconstruction of the diffraction pattern of γ -K 2 CO 3 is observed at pressures of 0.5–3.1 GPa if the DAC is loaded on the air.
机译:Na 2 CO 3和K 2 CO 3的相图已通过多砧(MA)和金刚石砧电池(DAC)技术确定。在加热的MA实验中,γ-Na 2 CO 3在高达12 GPa的条件下是稳定的,高于此压力,则转变为P 6 3 / mcm相。在26 GPa时,Na 2 CO 3-P 6 3 / mcm转变为新相,其衍射图样与理论上预测的Na 2 CO 3-P 2 1 / m相似。在DAC实验中进行冷压缩时,γ-Na 2 CO 3在高达25 GPa的最大压力下是稳定的。 K 2 CO 3显示了更复杂的相变序列。与γNa 2 CO 3不同,γ-K 2 CO 3的稳定场窄。在3 GPa时,K 2 CO 3以称为K 2 CO 3 -III的新相形式出现,该相转变为高于9 GPa的另一新相K 2 CO 3 -IV。在9-15 GPa的压力范围内,观察到另一个新相或III和IV相的混合物。 K 2 CO 3 -IV的衍射图与​​理论上预测的K 2 CO 3-P 2 1 / m相似,并且大多数衍射峰都可以用这种结构标明。水对K 2 CO 3的相变具有显著作用。如果在空气中加载DAC,则在0.5–3.1 GPa的压力下可以观察到γ-K 2 CO 3衍射图的重构。

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