Etude par effet Mössbauer de structure hyperfine nucleaire de 119Sn dans α-Fe2O3
Author:
Publisher
Elsevier BV
Subject
Condensed Matter Physics,General Materials Science,General Chemistry
Reference5 articles.
1. Neutron Diffraction by Paramagnetic and Antiferromagnetic Substances
2. Some Properties of Supported Smallα−Fe2O3Particles Determined with the Mössbauer Effect
3. Cation-Cation Interaction Contributions to the Hyperfine Interaction. The "Supertransferred Hyperfine Interaction"
4. ENDOR Study of the Unpaired Spin Density in KZnF3:Mn2+
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1. Chemical modification of nanocrystalline metal oxides: effect of the real structure and surface chemistry on the sensor properties;Russian Chemical Bulletin;2008-06
2. Metal-oxide based nanocomposites as materials for gas sensors;Russian Journal of General Chemistry;2008-05
3. Unusual distribution of the constituents of an (Fe2O3)0.8(SnO2)0.2 nanocomposite evidenced by 57Fe and 119Sn Mössbauer spectroscopy;Mendeleev Communications;2004-01
4. Characterization of fine particles of the α-Fe2O3-SnO2 system with residual SO2−4 ions on the surface;Journal of Solid State Chemistry;1987-05
5. Emission Moessbauer studies of carrier-free pentavalent antimony-119 ion adsorbed on .alpha.-ferric oxide and chromium(III) oxide surfaces;The Journal of Physical Chemistry;1982-11
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