New type of possible high-pressure polymorphism in NiAs minerals in planetary cores

被引:0
|
作者
Przemyslaw Dera
Jawad Nisar
Rajeev Ahuja
Sergey Tkachev
Vitali B. Prakapenka
机构
[1] The University of Chicago,Center for Advanced Radiation Sources
[2] Argonne National Laboratory,Condensed Matter Theory Group, Department of Physics and Astronomy
[3] Uppsala University,Applied Materials Physics, Department of Materials and Engineering
[4] Royal Institute of Technology (KTH),undefined
来源
关键词
Planetary cores; Nickel arsenide structure; NiP; High pressure; Phase transitions; Polymorphism; Bonding;
D O I
暂无
中图分类号
学科分类号
摘要
The nickel arsenide (B81) and related crystal structures are among the most important crystallographic arrangements assumed by Fe and Ni compounds with light elements such as Si, O, S, and P, expected to be present in planetary cores. Despite the simple structure, some of these materials like troilite (FeS) exhibit complex phase diagrams and rich polymorphism, involving significant changes in interatomic bonding and physical properties. NiP (oP16) represents one of the two principal structure distortions found in the nickel arsenide family and is characterized by P–P bonding interactions that lead to the formation of P2 dimers. In the current study, the single-crystal synchrotron X-ray diffraction technique, aided by first principles density functional theory (DFT) calculations, has been applied to examine the compression behavior of NiP up to 30 GPa. Two new reversible displacive phase transitions leading to orthorhombic high-pressure phases with Pearson symbols oP40 and oC24 were found to occur at approximately 8.5 and 25.0 GPa, respectively. The oP40 phase has the primitive Pnma space group with unit cell a = 4.7729(5) Å, b = 16.6619(12) Å, and c = 5.8071(8) Å at 16.3(1) GPa and is a superstructure of the ambient oP16 phase with multiplicity of 2.5. The oC24 phase has the acentric Cmc21 space group with unit cell a = 9.695(6) Å, b = 5.7101(9) Å, and c = 4.7438(6) Å at 28.5(1) GPa and is a superstructure of the oP16 phase with multiplicity of 1.5. DFT calculations fully support the observed sequence of phase transitions. The two new phases constitute logical next stages of P sublattice polymerization, in which the dilution of the P3 units, introduced in the first high-pressure phase, decreases, leading to compositions of Ni20(P3)4(P2)4 and Ni12(P3)4, and provide important clues to understanding of phase relations and transformation pathways in the NiAs family.
引用
收藏
页码:183 / 193
页数:10
相关论文
共 50 条
  • [41] HIGH-PRESSURE POLYMORPHISM IN DEUTERATED UREA
    Weber, H. P.
    Marshall, W. G.
    Dmitriev, V.
    ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2002, 58 : C174 - C174
  • [42] ON THE HIGH-PRESSURE POLYMORPHISM OF ANTIMONY.
    Ivakhenko, S.A.
    Ponyatovskiy, Ye.G.
    Physics of Metals and Metallography, 1979, 47 (06): : 172 - 175
  • [43] High-pressure polymorphism of ammonia hydrates
    Fortes, A. Dominic
    Griffiths, Gareth
    Needs, Richard J.
    Pickard, Christopher J.
    Hansen, Thomas
    ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2011, 67 : C31 - C31
  • [44] Evidence for high-pressure polymorphism in resorcinol
    Rao, R
    Sakuntala, T
    Godwal, BK
    PHYSICAL REVIEW B, 2002, 65 (05) : 1 - 8
  • [45] High-pressure polymorphism in phosphorus nitrides
    Dong, JJ
    Kinkhabwala, AA
    McMillan, PF
    PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS, 2004, 241 (10): : 2319 - 2325
  • [46] HIGH-PRESSURE POLYMORPHISM OF TITANIUM DIOXIDE
    JAMIESON, JC
    OLINGER, B
    SCIENCE, 1968, 161 (3844) : 893 - &
  • [47] HIGH-PRESSURE POLYMORPHS FOUND IN CERAMICS AND MINERALS
    KUME, S
    SOLID STATE IONICS, 1988, 26 (02) : 144 - 144
  • [48] THE FORMATION AND PRESERVATION OF HIGH-PRESSURE MINERALS IN EUCRITES
    Fudge, C.
    Sharp, T. G.
    METEORITICS & PLANETARY SCIENCE, 2023, 58 : A92 - A92
  • [49] High-pressure melting relations in Fe-C-S systems: Implications for metallic cores in planetary bodies
    Dasgupta, R.
    Whelan, G.
    Buono, A.
    Walker, D.
    GEOCHIMICA ET COSMOCHIMICA ACTA, 2008, 72 (12) : A199 - A199
  • [50] New insights into the high-pressure polymorphism of SiO2 cristobalite
    Dera, Przemyslaw
    Lazarz, John D.
    Prakapenka, Vitali B.
    Barkley, Madison
    Downs, Robert T.
    PHYSICS AND CHEMISTRY OF MINERALS, 2011, 38 (07) : 517 - 529