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HIGH-PRESSURE RAMAN INVESTIGATION ON CDMOO4 AND PRESSURE-INDUCED PHASE TRANSFORMATIONS

机译:CDMOO4的高压拉曼研究和压力诱导的相变

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Cadmium molybdate (CdMoO4) has been investigated by high-pressure Raman spectroscopy to 40 GPa in the diamond cell. Changes in the Raman spectral features reveal two pressure-induced phase transitions in the pressure range investigated. Detailed analysis of the Raman data and comparison with the spectra of CdWO4 confirm that the first transition near 12 GPa is from the scheelite phase to the wolframite phase. The second phase change occurring near 25 GPa from the wolframite phase is marked by a large downward shift (120 cm(-1)) of the upsilon(1) mode frequency of Mo-O polyhedron. By comparison with the upsilon(1) mode frequency of the WO6, it is concluded that the Mo-O coordination becomes truly octahedral in the new high-pressure phase (phase III) of CdMoO4. The behavior is compared with that of CdWO4 which undergoes an analogous pressure-induced phase transition near 20 GPa. Our recent high-pressure x-ray diffraction study on CdMoO4 fully supports the above conclusions. [References: 15]
机译:钼酸镉(CdMoO4)已通过高压拉曼光谱法研究了金刚石电池中40 GPa的含量。拉曼光谱特征的变化揭示了在所研究的压力范围内两个由压力引起的相变。拉曼数据的详细分析以及与CdWO4的光谱比较证实,接近12 GPa的第一个跃迁是从白钨矿相到黑钨矿相。 Mo-O多面体的upsilon(1)模态频率发生大的向下偏移(120 cm(-1)),标志着从黑钨矿相开始发生在25 GPa附近的第二相变。通过与WO6的upsilon(1)模式频率进行比较,可以得出结论,Mo-O配位在CdMoO4的新高压相(III相)中变为真正的八面体。将其行为与CdWO4的行为进行比较,后者在20 GPa附近经历了类似的压力诱导相变。我们最近对CdMoO4进行的高压X射线衍射研究充分支持了以上结论。 [参考:15]

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