Selected applications of 57Fe Mössbauer spectroscopy to mineral studies

被引:0
|
作者
E. De Grave
S.G. Eeckhout
C.A. McCammon
机构
[1] University of Gent,Department of Subatomic and Radiation Physics
[2] University of Bayreuth,Bayerisches Geoinstitut
来源
Hyperfine Interactions | 1999年 / 122卷
关键词
Mössbauer fractions; crystal field; riebeckite; franklinite; bernalite; low-pressure clinopyroxene; hedenbergite; diamond inclusions; deliensite;
D O I
暂无
中图分类号
学科分类号
摘要
The microscopic models which are commonly used to interpret the temperature variations of the centre shifts and quadrupole splittings observed from the Mössbauer spectra of iron-containing minerals are briefly presented and illustrated using the results of recent studies of ortho- and clinopyroxenes. The importance of applied-field Mössbauer spectroscopy for the determination of the electric field gradient is indicated. Aspects of the magnetic spectra of Fe2+-bearing minerals emphasise the benefit of using external fields to elucidate the nature of the magnetic ordering. Two Fe3+ minerals, bernalite and franklinite, serve as examples to illustrate this point. Finally, two applications of the Mössbauer milliprobe technique are presented: the characterisation of inclusions in diamond, and the determination of the oxidation state of a new iron uranyl sulfate mineral, deliensite.
引用
收藏
页码:21 / 38
页数:17
相关论文
共 50 条
  • [31] High-Pressure 57Fe Mössbauer Spectroscopy of Octamethyl-Ethynyl-Ferrocene
    T. Suenaga
    S. Nasu
    T. Kawakami
    R. H. Herber
    [J]. Hyperfine Interactions, 2004, 156-157 : 235 - 240
  • [32] Single-crystalline M-type Sr Hexaferrites studied by 57Fe Mössbauer spectroscopy
    Nobumoto Nagasawa
    Shugo Ikeda
    Aiko Shimoda
    Takeshi Waki
    Yoshikazu Tabata
    Hiroyuki Nakamura
    Hisao Kobayashi
    [J]. Hyperfine Interactions, 2016, 237
  • [33] Investigations on the structural, electrical, magnetic and 57Fe Mössbauer studies of YFeO3
    Padmasree, G.
    Kumar, N. Pavan
    Abhinav, E. Meher
    Reddy, P. Yadagiri
    Reddy, Ch Gopal
    [J]. Ceramics International, 2023, 49 (05) : 7500 - 7505
  • [34] The effect of thermal treatment on the 57Fe Mössbauer spectrum of beryl
    Geraldo Magela da Costa
    Gabriel de Oliveira Polli
    Márcio A. Kahwage
    Eddy de Grave
    Antônio Claret Soares Sabioni
    Júlio Cesar Mendes
    [J]. Physics and Chemistry of Minerals, 2006, 33 : 161 - 166
  • [35] The method of invariants applied to the analysis of 57Fe Mössbauer spectra
    K. Szymański
    D. Satuła
    L. Dobrzyński
    [J]. Hyperfine Interactions, 2009, 192 : 77 - 83
  • [36] Mineralogy, 57Fe Mössbauer spectra and magnetization of chalcolithic pottery
    R. Keller
    L. Masch
    J. Pohl
    E. Schmidbauer
    [J]. Physics and Chemistry of Minerals, 2005, 32 : 165 - 174
  • [37] 57Fe Mössbauer Spectroscopic Study on the Assembled Iron Complexes
    S. Nakashima
    Y. Asada
    T. Okuda
    [J]. Hyperfine Interactions, 2004, 156-157 : 353 - 358
  • [38] Polarization Factors for 57Fe Mössbauer Diffractions from Polycrystals
    J. Y. Y. Lin
    U. Kriplani
    M. Regehr
    B. Fultz
    [J]. Hyperfine Interactions, 2001, 136-137 : 663 - 672
  • [39] 57Fe Mössbauer study of meteorite from Kaba, Hungary
    I. Czakó-Nagy
    I. Kubovics
    A. Vértes
    [J]. Journal of Radioanalytical and Nuclear Chemistry, 2003, 256 : 153 - 154
  • [40] 57Fe Mössbauer Spectrometry to explore natural and artificial nanostructures
    Virender K. Sharma
    Zoltan Homonnay
    Tetsuaki Nishida
    Jean-Marc Greneche
    [J]. Journal of Materials Research, 2023, 38 : 925 - 936