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Phase Transition and vibration properties of MnCO <sub>3</sub> at high pressure and high-temperature by Raman spectroscopy

27

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35

References

2018

Year

Abstract

The high pressure and high-temperature behavior of MnCO3 was investigated up to 55 GPa at ambient temperature and up to 573 K at ambient pressure by Raman spectroscopy, respectively. Some new modes were detected at ∼16 and ∼32 GPa, which were assigned to MnCO3-I below 16 GPa and to MnCO3-II above 32 GPa, and to a coexisting phase of them in between. The high pressure vibration properties of all Raman modes, especially high frequency modes, were systematically reported. The coexisting phase of MnCO3-I and MnCO3-II had much easier compressibility than the MnCO3-II phase. The thermal stability of MnCO3 was at least to 573 K and its thermal expansion along the c axis was easier than a and b axes.

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