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    Lun Xiong, Bin Li, Fang Miao, Qiang Li, Guangping Chen, Jinxia Zhu, Yingchun Ding, Duanwei He. Equal compressibility structural phase transition of molybdenum at high pressureJ. Chin. Phys. B, 2022, 31(11): 116102.
    Lun Xiong, Bin Li, Fang Miao, Qiang Li, Guangping Chen, Jinxia Zhu, Yingchun Ding, Duanwei He. Equal compressibility structural phase transition of molybdenum at high pressureJ. Chin. Phys. B, 2022, 31(11): 116102.
  • Equal compressibility structural phase transition of molybdenum at high pressure

    • We have studied the high-pressure compression behavior of molybdenum up to 60 GPa by synchrotron radial x-ray diffraction (RXRD) in a diamond anvil cell (DAC). It is found that all diffraction peaks of molybdenum undergo a split at around 27 GPa, and we believe that a phase transition from a body-centered cubic structure to a rhombohedral structure at room pressure has occurred. The slope of pressure-volume curve shows continuity before and after this phase transition, when fitting the pressure-volume curves of the body-centered cubic structure at low pressure and the rhombohedral structure at high pressure. A bulk modulus of 261.3 (2.7) GPa and a first-order derivative of the bulk modulus of 4.15 (0.14) are obtained by using the nonhydrostatic compression data at the angle ψ = 54.7° between the diffracting plane normal and stress axis.
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