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Ceramics International, ISSN 0272-8842, 04/2012, Volume 38, Issue 3, pp. 2225 - 2231
In this work, we have investigated the structural and catalytic properties of Co, Cu and Ni spinel ferrites. Nanostructured ferrites with particle diameters... 
D. Ferrites | Catalytic activity | Nanostructures | C. Chemical properties | OXIDATION | FENTON-LIKE SYSTEMS | SPINEL | MATERIALS SCIENCE, CERAMICS | IRON-OXIDES | Ferrites | SOFT CHEMICAL METHODS | XPS ASPECTS | Chemical properties | H2O2 REACTIONS | COBALT | Fluorescence | Spinel group | Hydrogen peroxide | X-ray spectroscopy | Cobalt
Journal Article
Materials Research Bulletin, ISSN 0025-5408, 2011, Volume 46, Issue 12, pp. 2204 - 2207
The synthesis of nickel ferrite nanoparticles through sol–gel auto-combustion method which is a unique combination of the ignition and the chemical gelatine... 
B. Chemical synthesis | C. Raman spectroscopy | A. Magnetic materials | A. Nanostructures | D. Magnetic properties | ROUTE | MATERIALS SCIENCE, MULTIDISCIPLINARY | NANOCRYSTALLINE NIFE2O4 | Magnetic materials | MFE2O4 M | Nanostructures | MAGNETIC-PROPERTIES | Chemical synthesis | Raman spectroscopy | POWDER | IN-SITU | Magnetic properties | Nanoparticles | Powders | Iron compounds | Analysis | Nickel | Methods
Journal Article
Ceramics International, ISSN 0272-8842, 05/2013, Volume 39, Issue 1, pp. S239 - S243
In this work, nanocrystalline M–Zn ferrites (M=Ni; Mn; Cu) with compositions of M1−xZnxFe2O4 (x=0.0, 0.2 and 0.4) were synthesized from metal nitrate... 
A. Sol–gel processes | D. Ferrites | C. Magnetic properties | A. Sol-gel processes | Ferrites | Sol-gel processes | ZN FERRITE | MATERIALS SCIENCE, CERAMICS | Magnetic properties | Powders | Iron compounds | Magnetization | Analysis | Crystals | Spinel group | Combustion | Structure | Methods
Journal Article
Ceramics International, ISSN 0272-8842, 08/2014, Volume 40, Issue 7, pp. 9337 - 9344
A series of ferrite samples with the compositional formula, Ni0.5Co0.5−xZnxFe2O4 (0≤x≤0.5), was prepared using the citrate based sol–gel method for the better... 
B. X-ray diffraction | A. Sol–gel method | D. Ferrites | C. Magnetic properties | A. Sol-gel method | Ferrites | NANOPARTICLES | X-ray diffraction | ZINC FERRITE | CATION DISTRIBUTION | Sol gel method | MOSSBAUER | ANISOTROPY | MATERIALS SCIENCE, CERAMICS | MICROSTRUCTURE | Magnetic properties | Iron compounds | Magnetization | Anisotropy | Analysis
Journal Article
Ceramics International, ISSN 0272-8842, 01/2015, Volume 41, Issue 1, pp. 1765 - 1770
A series of substituted lithium ferrite samples Li0.5−xNixCuxFe2.5−xO4, with substituent concentration x=0–0.25 in steps of 0.05, were prepared by conventional... 
Cation distribution | D. Ferrites | C. Magnetic properties | Microwave applications | Ferrites | BEHAVIOR | LITHIUM FERRITES | FREQUENCY | CD FERRITES | MAGNETIC-PROPERTIES | ABSORPTION | SPECTRA | MATERIALS SCIENCE, CERAMICS | Magnetic properties | Magnetization | Spinel group | Iron compounds
Journal Article
Journal of Materials Science: Materials in Electronics, ISSN 0957-4522, 2009, Volume 20, Issue 10, pp. 911 - 952
Journal Article
Ceramics International, ISSN 0272-8842, 09/2014, Volume 40, Issue 8, pp. 12855 - 12860
Bulk samples of spinel ferrites with the compositional formula, Co1−xNixFe2O4 (x=0.0, 0.5, 1.0) were synthesized by a solid-state reaction route to discuss... 
X-ray diffraction | D. Dielectric properties | Ceramics | Raman spectroscopy | NANOPARTICLES | Dielectric properties | BEHAVIOR | ELECTRICAL-PROPERTIES | RAMAN | MATERIALS SCIENCE, CERAMICS
Journal Article