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Pressure-induced metallization, transition to the pyrite-type structure, and superconductivity in palladium disulfide PdS_2

机译:压力诱导的金属化,过渡到吡啶型结构,钯二硫化物PDS_2中的超导性

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摘要

The pressure effect on crystal structures, lattice vibrations, and electrical transport properties of PdS2 and NiSe2 were studied under high pressures of up to similar to 50 GPa using Raman spectroscopy and electrical resistivity measurements. PdS2 undergoes semiconductor-to-metal transition at a pressure of similar to 7 GPa without a structural phase transition. Structural transition to the pyrite-type phase occurs at a pressure of similar to 16 GPa. Superconductivity emerges in the pyrite-type phase of PdS2 with a well-defined dome-shaped dependence of critical temperature of superconductivity on pressure, with a maximum value of 8.0 K at 37.4 GPa. Although this behavior is similar to that in isostructural PdSe2, correlation with anomalous anion bond softening at critical temperature is not observed in PdS2 in contrast to PdSe2. Conversely, the anion bond instability is observed by the softening of the Se-2(2-) internal vibrational Raman mode in pyrite NiSe2 under pressure. Despite the persisting structural instability due to destabilization of Se-2(2-) dimers, NiSe2 remains a normal nonsuperconducting metal.
机译:在使用拉曼光谱和电阻率测量的高压下,在高压下的高压力下研究了对PDS2和NiSE2的晶体结构,晶格振动和电气传输性能的压力影响。 PDS2在没有结构相转变的情况下在类似于7GPa的压力下进行半导体到金属转变。在类似于16GPa的压力下发生与硫铁矿型相的结构过渡。在PDS2的硫铁矿型相中出现超导率,具有明确的圆顶形状的临界温度对压力的临界温度的依赖性,最大值为8.0k,在37.4GPa下。尽管这种行为类似于IsoStr发生器PDSE2中的行为,但是与PDS2的PDS2中未观察到与临界温度的异常阴离子键软的相关性。相反,通过在压力下通过吡啶石NISE2中的SE-2(2-)内部振动拉曼模式软化来观察到阴离子粘合不稳定性。尽管由于SE-2(2-)二聚体的稳定性,但由于SE-2(2-)二聚体的稳定性,NISE2仍然是正常的非蓄水金属。

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  • 来源
    《Physical review》 |2019年第1期|014507.1-014507.7|共7页
  • 作者单位

    Max Planck Inst Chem Phys Solids D-01187 Dresden Germany|Tech Univ Dresden Inst Solid State Phys D-01069 Dresden Germany;

    Max Planck Inst Chem Phys Solids D-01187 Dresden Germany|Russian Acad Sci Fed Sci Res Ctr Crystallog & Photon Shubnikov Inst Crystallog Moscow 119333 Russia;

    Max Planck Inst Chem Phys Solids D-01187 Dresden Germany;

    Max Planck Inst Chem Phys Solids D-01187 Dresden Germany;

    Russian Acad Sci Fed Sci Res Ctr Crystallog & Photon Shubnikov Inst Crystallog Moscow 119333 Russia;

    Max Planck Inst Chem Phys Solids D-01187 Dresden Germany;

    Max Planck Inst Chem Phys Solids D-01187 Dresden Germany;

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