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High Oxygen Pressures and the Stabilization of the Highest Oxidation States of Transition Metals – Mössbauer Spectroscopic Characterization of the Induced Electronic Phenomena

  • Gérard Demazeau EMAIL logo , Alexey Baranov , Igor Presniakov and Alexey Sobolev
Published/Copyright: June 2, 2014
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Received: 2006-7-3
Published Online: 2014-6-2
Published in Print: 2006-12-1

© 1946 – 2014: Verlag der Zeitschrift für Naturforschung

Articles in the same Issue

  1. Materials Chemistry under High Pressures – Some Recent Aspects
  2. High-pressure Synthesis and Structural, Electrical and Magnetic Properties of a New Filled Skutterudite TbFe4P12
  3. Synthesis, Structure and Properties of the High-pressure Modifications of the Ternary Compounds REPtSn (RE = La, Pr, Sm)
  4. High-pressure Synthesis of Strontium Hexasilicide
  5. Structural Evolution of the Binary System Ba-Si under High-pressure and High-temperature Conditions
  6. An Anhydrous High-pressure Synthesis Route to Rutile Type RhO2
  7. Moderate-pressure Synthesis and Neutron Diffraction Study of New Metastable Oxides
  8. High-pressure / High-temperature Synthesis of Transition Metal Oxide Perovskites
  9. High Oxygen Pressures and the Stabilization of the Highest Oxidation States of Transition Metals – Mössbauer Spectroscopic Characterization of the Induced Electronic Phenomena
  10. Superhard Superconductor Composites Obtained by Sintering of Diamond, c-BN and C60 Powders with Superconductors
  11. Synthesis of Superhard and Ultrahard Materials by 3D-polymerization of C60, C70 Fullerenes Under High Pressure (15 GPa) and Temperatures up to 1820 K
  12. Structural Transformation of Boron Nitride Nanoparticles in Benzene under Moderate Conditions
  13. High-pressure / High-temperature Synthesis and Characterization of Boron-doped Diamond
  14. Synthesis of Pt Nanoparticles and Nanorods by Microwave-assisted Solvothermal Technique
  15. High-pressure / High-temperature Behavior of the Methane-Ammonia- Water System up to 3 GPa
  16. Compression Behavior of Zr-doped Nanoanatase
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