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Phase Transition and vibration properties of MnCO3 at high pressure and high-temperature by Raman spectroscopy
Chaoshuai Zhao;  Heping Li;  Jianjun Jiang;  Yu He;  Wen Liang
2018
Source PublicationHigh Pressure Research
Volume38Issue:3Pages:212–223
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.

Indexed BySCI
Language英语
Document Type期刊论文
Identifierhttp://ir.gyig.ac.cn/handle/42920512-1/8174
Collection地球内部物质高温高压实验室
Affiliation1.Key Laboratory for High-temperature and High pressure Study of the Earth’s Interior, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang, People’s Republic of China
2.College of Earth Sciences, University of Chinese Academy of Sciences, Beijin
Recommended Citation
GB/T 7714
Chaoshuai Zhao;Heping Li;Jianjun Jiang;Yu He;Wen Liang. Phase Transition and vibration properties of MnCO3 at high pressure and high-temperature by Raman spectroscopy[J]. High Pressure Research,2018,38(3):212–223.
APA Chaoshuai Zhao;Heping Li;Jianjun Jiang;Yu He;Wen Liang.(2018).Phase Transition and vibration properties of MnCO3 at high pressure and high-temperature by Raman spectroscopy.High Pressure Research,38(3),212–223.
MLA Chaoshuai Zhao;Heping Li;Jianjun Jiang;Yu He;Wen Liang."Phase Transition and vibration properties of MnCO3 at high pressure and high-temperature by Raman spectroscopy".High Pressure Research 38.3(2018):212–223.
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