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首页> 外文期刊>Journal of Applied Physics >Volume compression of period 4 elements: Zn, Ge, As, and Se above 200 GPa: Ordering of atomic volume by atomic number
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Volume compression of period 4 elements: Zn, Ge, As, and Se above 200 GPa: Ordering of atomic volume by atomic number

机译:期间4个元​​素的体积压缩:Zn,Ge,AS和SE以上200 GPA:通过原子数排序原子量

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摘要

X-ray diffraction measurements of period 4 elements, including Zn, Ge, As, and Se, were extended up to pressures of 251, 249, 250, and 317 GPa, respectively, and the structural phase transitions were investigated. The hcp phase of Zn was stable up to 251 GPa, while a decrease in the optical reflectance of the sample above 50 GPa suggests a change in the electronic structure, such as a semimetallic transition. Ge transformed from the Cmca phase to the hcp phase with a volume reduction (-△V) of approximately 1% at 180 GPa. In the stable region of the Cmca phase, the hep phase, which has a larger atomic volume than the Cmca phase, coexisted with the Cmca phase, and both atomic volumes reversed at approximately 180 GPa. For As, the monoclinic host-guest phase transformed to the bcc phase with -△V=2.6% at 126 GPa. The β-Po-type phase of Se transformed to the bee phase with -△V= 1.9% at 140 GPa, and the bcc phase was stable up to 317 GPa although a bcc-fcc phase transition was theoretically predicted. The equations of state of the monatomic metallic high-pressure phases were determined. The atomic volume of the monatomic metallic phases for period 4 elements increased with increasing atomic number, and the systematicity reported for period 5 elements was observed. Moreover, in the monatomic metallic phases of typical group 12-17 elements for periods 4 and 5, the atomic volume is ordered with increasing atomic number above 200 GPa.
机译:周期4元素的X射线衍射测量值,包括Zn,Ge,和Se,分别延伸到251,249,250和317GPa的压力,并研究了结构相转变。 Zn的HCP相位稳定至251GPa,而70GPa以上样本的光反射率降低表明电子结构的变化,例如半金属转换。 GE从CMCA相转化为HCP相,在180GPa下的体积减少( - = v)约为1%。在CMCA相的稳定区域中,具有比CMCA相的较大原子体积的HEP相,与CMCA相的共同,并且两个原子量在大约180gPa下反转。例如,单替代的宿主 - 客体阶段在126GPa下转化为BCC阶段 - ≥2.6%。 Se的β-PO型相对于140GPa的培养物相对 - ≥1.9%转化为培养物,并且BCC相稳定至317GPa,尽管理论上预测了BCC-FCC相转变。测定了单原料金属高压相的状态方程。通过增加的原子序数增加4个元素的单因素金属相的原子体积,并且观察到5个元素报告的系统性能。此外,在周期4和5的典型12-17元件的单颗粒金属相中,原子体积随着200GPa的增加而排序。

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  • 来源
    《Journal of Applied Physics》 |2021年第2期|025901.1-025901.8|共8页
  • 作者单位

    Graduate School of Material Science University of Hyogo 3-2-1 Kouto Kamigohri Hyogo 678-1297 Japan;

    Graduate School of Material Science University of Hyogo 3-2-1 Kouto Kamigohri Hyogo 678-1297 Japan;

    Graduate School of Material Science University of Hyogo 3-2-1 Kouto Kamigohri Hyogo 678-1297 Japan;

    Japan Synchrotron Radiation Research Institute (JASRI) 1-1-1 Kouto Sayo Sayo-gun Hyogo 679-5198 Japan;

    Japan Synchrotron Radiation Research Institute (JASRI) 1-1-1 Kouto Sayo Sayo-gun Hyogo 679-5198 Japan;

    Japan Synchrotron Radiation Research Institute (JASRI) 1-1-1 Kouto Sayo Sayo-gun Hyogo 679-5198 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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