NaZnF3 as a low-pressure analog of MgSiO3

被引:3
|
作者
Kurzydlowski, Dominik [1 ]
Gajek, Arkadiusz [2 ]
Mazej, Zoran [3 ]
机构
[1] Cardinal Stefan Wyszynski Univ Warsaw, Fac Math & Nat Sci, PL-01038 Warsaw, Poland
[2] Polish Acad Sci, Inst Phys Chem, PL-01224 Warsaw, Poland
[3] Jozef Stefan Inst, Dept Inorgan Chem & Technol, SI-1000 Ljubljana, Slovenia
关键词
POST-PEROVSKITE PHASE; CRYSTAL-STRUCTURE; POSTPEROVSKITE TRANSITIONS; FLUORIDES; DISSOCIATION; TEMPERATURE; MGGEO3; NAMGF3; CELL;
D O I
10.1103/PhysRevMaterials.5.113602
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Solid-state systems whose properties at high pressure (exceeding 1 GPa) mimic those of MgSiO3 are of large importance in the study of the interior of planets. By means of density functional theory (DFT) calculations we studied the high-pressure properties of a MgSiO3 analog, NaZnF3. We reproduce the phase-transition sequence previously reported for this compound (GdFeO3 -> CalrO(3) -> La2S3) and predict that it should undergo a two-step dissociation: decomposition into an equimolar mixture of Na2ZnF4 and NaZn2F5 at 25.4 GPa, followed by a breakdown into ZnF2 and NaF at 66.8 GPa. These processes are analogous to those predicted for compressed MgSiO3. Moreover, both Na2ZnF4 and NaZn2F5 are isostructural with analogous phases from the Mg-Si-O system. We also find that both these compounds are thermodynamically stable at ambient conditions (Na2ZnF4) or at a low pressure of 19 GPa (NaZn2F5). Our study indicates that NaZnF3 could serve as a good low-pressure analog of MgSiO3 exhibiting the same sequence of phase transitions, and pressure induced decomposition, but at pressures an order of magnitude lower.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] NaMgF3:: A low-pressure analog of MgSiO3
    Umemoto, K.
    Wentzcovitch, R. M.
    Weidner, D. J.
    Parise, J. B.
    GEOPHYSICAL RESEARCH LETTERS, 2006, 33 (15)
  • [2] Ab initio exploration of post-PPV transitions in low-pressure analogs of MgSiO3
    Umemoto, Koichiro
    Wentzcovitch, Renata M.
    PHYSICAL REVIEW MATERIALS, 2019, 3 (12)
  • [3] High-pressure structural behavior and equation of state of NaZnF3
    Yakovlev, Sergey
    Avdeev, Maxim
    Mezouar, Mohamed
    JOURNAL OF SOLID STATE CHEMISTRY, 2009, 182 (06) : 1545 - 1549
  • [4] STRUCTURAL AND DYNAMICAL STUDIES OF THE ORTHORHOMBIC NaZnF3 PEROVSKITE AT LOW TEMPERATURES
    Ratuszna, A.
    Rybczynski, J.
    Daniel, Ph.
    Gesland, J. Y.
    ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 1999, 55 : 493 - 494
  • [5] HIGH-PRESSURE PHASES OF MGSIO3
    LIU, LG
    EARTH AND PLANETARY SCIENCE LETTERS, 1976, 31 (02) : 200 - 208
  • [6] Densification of MgSiO3 glass with pressure and temperature
    Yamada, A.
    Gaudio, S. J.
    Lesher, C. E.
    INTERNATIONAL CONFERENCE ON HIGH PRESSURE SCIENCE AND TECHNOLOGY, JOINT AIRAPT-22 AND HPCJ-50, 2010, 215
  • [7] ON THE STRUCTURE AND ELECTRICAL-CONDUCTIVITY OF THE FLUOPEROVSKITE NAZNF3
    WALLIN, T
    ZEISING, J
    SOLID STATE IONICS, 1990, 39 (3-4) : 273 - 276
  • [8] Thermoluminescence of pure and Eu-doped NaZnF3
    Furetta, C
    Graziani, M
    Sanipoli, C
    Scacco, A
    RADIATION EFFECTS AND DEFECTS IN SOLIDS-INCORPORATING PLASMA SCIENCE AND PLASMA TECHNOLOGY, 1995, 136 (1-4): : 217 - 220
  • [9] Structural distortion of CaSnO3 perovskite under pressure and the quenchable post-perovskite phase as a low-pressure analogue to MgSiO3
    Tateno, Shigehiko
    Hirose, Kei
    Sata, Nagayoshi
    Ohishi, Yasuo
    PHYSICS OF THE EARTH AND PLANETARY INTERIORS, 2010, 181 (1-2) : 54 - 59
  • [10] Ab initio study of MgSiO3 low-clinoenstatite at high pressure
    Duan, WH
    Karki, BB
    Wentzcovitch, RM
    Gu, BL
    AMERICAN MINERALOGIST, 2001, 86 (5-6) : 762 - 766