Structural changes and valence states in the MgCr2O4–FeCr2O4 solid solution series

被引:0
|
作者
D. Lenaz
H. Skogby
F. Princivalle
U. Hålenius
机构
[1] Dipartimento di Scienze della Terra,Department of Mineralogy
[2] Swedish Museum of Natural History,undefined
来源
关键词
MgCr; O; FeCr; O; spinels; Single-crystal XRD; EPMA; OAS; Mössbauer;
D O I
暂无
中图分类号
学科分类号
摘要
The influence on the structure of Fe2+ → Mg substitution was studied in synthetic single crystals belonging to the MgCr2O4–FeCr2O4 series produced by flux growth at 900–1200 °C in controlled atmosphere. Samples were analyzed by single-crystal X-ray diffraction, electron microprobe analyses, optical absorption-, infrared- and Mössbauer spectroscopy. The Mössbauer data show that iron occurs almost exclusively as IVFe2+. Only minor Fe3+ (<0.005 apfu) was observed in samples with very low total Fe. Optical absorption spectra show that chromium with few exceptions is present as a trivalent cation at the octahedral site. Additional absorption bands attributable to Cr2+ and Cr3+ at the tetrahedral site are evident in spectra of end-member magnesiochromite and solid-solution crystals with low ferrous contents. Structural parameters a0, u and T–O increase with chromite content, while the M–O bond distance remains nearly constant, with an average value equal to 1.995(1) Å corresponding to the Cr3+ octahedral bond distance. The ideal trend between cell parameter, T–O bond length and Fe2+ content (apfu) is described by the following linear relations: a0=8.3325(5) + 0.0443(8)Fe2+ (Å) and T–O=1.9645(6) + 0.033(1)Fe2+ (Å) Consequently, Fe2+ and Mg tetrahedral bond lengths are equal to 1.998(1) Å and 1.965(1) Å, respectively.
引用
收藏
页码:633 / 642
页数:9
相关论文
共 50 条
  • [31] REDUCTION PROCESS OF CHROMITE (FECR2O4) WITH CARBON
    KATAYAMA, HG
    JOURNAL OF THE JAPAN INSTITUTE OF METALS, 1977, 41 (03) : 275 - 280
  • [32] On the Theory of the Electric Polarization in FeCr2O4 Ferrimagnet
    M. V. Eremin
    JETP Letters, 2019, 109 : 249 - 251
  • [33] BEHAVIOR OF FECR2O4 DURING HEATING AND COOLING
    ROMANOVSKII, LB
    TEREKHIN, VA
    SHEVCHENKO, AV
    INORGANIC MATERIALS, 1988, 24 (03) : 372 - 375
  • [34] On the Theory of the Electric Polarization in FeCr2O4 Ferrimagnet
    Eremin, M. V.
    JETP LETTERS, 2019, 109 (04) : 249 - 251
  • [35] Catalysis and photocatalysis of MgCr2O4 powder at room temperature
    He H.
    Recent Patents on Chemical Engineering, 2010, 3 (01): : 74 - 77
  • [36] Investigation on the low temperature distorted phase of MgCr2O4
    Gao, Shang
    Zaharko, Oksana
    Fennell, Tom
    Tsurkan, Vladmir
    Rueegg, Christian
    ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2016, 72 : S315 - S315
  • [37] Sensitivity of the magnetic properties of the ZnCr2O4 and MgCr2O4 spinels to nonstoichiometry
    Dutton, S. E.
    Huang, Q.
    Tchernyshyov, O.
    Broholm, C. L.
    Cava, R. J.
    PHYSICAL REVIEW B, 2011, 83 (06):
  • [38] Magnetic susceptibility of the frustrated spinels ZnCr2O4, MgCr2O4 and CdCr2O4
    Kant, Ch.
    Deisenhofer, J.
    Tsurkan, V.
    Loidl, A.
    INTERNATIONAL CONFERENCE ON MAGNETISM (ICM 2009), 2010, 200
  • [39] Solution combustion synthesis of FeCr2O4:Zn,Al pigment powders
    Paborji, Fatemeh
    Shafiee Afarani, Mahdi
    Arabi, Amir Masoud
    Ghahari, Mehdi
    INTERNATIONAL JOURNAL OF APPLIED CERAMIC TECHNOLOGY, 2023, 20 (04) : 2203 - 2216
  • [40] THERMAL EXPANSION OF SPINELS MGCR2O4, MGA12O4 AND MGFE2O4
    KAPRALIK, I
    CHEMICKE ZVESTI, 1969, 23 (09): : 665 - &