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Citation: V. Nivoix et B. Gillot, PREPARATION, CHARACTERIZATION AND REACTIVITY TOWARD OXYGEN OF NEW NANOSIZED VANADIUM-IRON SPINELS, Solid state ionics, 111(1-2), 1998, pp. 17-25
Citation: E. Kester et B. Gillot, CATION DISTRIBUTION, THERMODYNAMIC AND KINETICS CONSIDERATIONS IN NANOSCALED COPPER FERRITE SPINELS - NEW EXPERIMENTAL APPROACH BY XPS AND NEW RESULTS BOTH IN THE BULK AND ON THE GRAIN-BOUNDARY, Journal of physics and chemistry of solids, 59(8), 1998, pp. 1259-1269
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Citation: P. Perriat et al., OXIDATION AND REDUCTION REACTIONS IN SPINEL OXIDES - INFLUENCE UPON SOME PHYSICAL-PROPERTIES, Journal de physique. IV, 7(C1), 1997, pp. 43-46
Authors:
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GILLOT B
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Citation: V. Nivoix et al., CORRELATION BETWEEN THE REACTIVITY TOWARDS OXYGEN AND THE COERCITIVITY IN SUBMICRON VANADIUM FERRITE SPINELS, Journal de physique. IV, 7(C1), 1997, pp. 237-238
Citation: P. Tailhades et al., MIXED-VALENCE DEFECT FERRITES - A NEW FAMILY OF FINE POWDERS AND THIN-FILMS OF SPINEL FERRITES, Journal de physique. IV, 7(C1), 1997, pp. 249-252
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KESTER E
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Citation: E. Kester et al., VALENCE STATES OF COPPER AND CATION DISTRIBUTION IN SUBMICRON COPPER FERRITE SPINELS 0-LESS-THAN-OR-EQUAL-TO-X-LESS-THAN-OR-EQUAL-TO-1), Journal de physique. IV, 7(C1), 1997, pp. 261-262
Citation: B. Gillot et al., REACTIVITY TOWARDS OXYGEN AND CATION DISTRIBUTION OF MANGANESE IRON SPINEL MN3-XFEXO4 0-LESS-THAN-OR-EQUAL-TO-X-LESS-THAN-OR-EQUAL-TO-3) FINE POWDERS STUDIED BY THERMOGRAVIMETRY AND IR SPECTROSCOPY, Journal of materials chemistry, 7(5), 1997, pp. 827-831
Citation: B. Gillot et al., OXIDATION MECHANISM AND VALENCE STATES OF COPPER AND MANGANESE IN TETRAGONAL CUMN2O4, Journal of materials chemistry, 7(12), 1997, pp. 2513-2517
Citation: M. Radid et al., THE KINETICS AND MECHANISM OF THE LOW-TEMPERATURE REACTION BETWEEN TIN AND COPPER(I) CHLORIDE POWDERS, Journal of alloys and compounds, 260(1-2), 1997, pp. 172-178
Citation: E. Kester et al., ANALYSIS OF THE OXIDATION PROCESS AND MECHANICAL EVOLUTION IN NANOSIZED COPPER SPINEL FERRITES - ROLE OF STRESSES ON THE COERCIVITY, Materials chemistry and physics, 51(3), 1997, pp. 258-264
Authors:
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NIVOIX V
KESTER E
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VILLETTE C
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Citation: B. Gillot et al., REACTIVITY TOWARD OXYGEN AND CATION DISTRIBUTION IN COPPER-MANGANESE FERRITE SPINELS FINE POWDERS, Materials chemistry and physics, 48(2), 1997, pp. 111-118
Citation: B. Gillot et B. Domenichini, EFFECT OF THE PREPARATION METHOD AND GRINDING TIME OF SOME MIXED-VALENCY FERRITE SPINELS ON THEIR CATIONIC DISTRIBUTION AND THERMAL-STABILITY TOWARD OXYGEN, Materials chemistry and physics, 47(2-3), 1997, pp. 217-224
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Citation: E. Elbadraoui et al., CATION DISTRIBUTION AND MECHANISM OF ELECTRICAL-CONDUCTION IN NICKEL-COPPER MANGANITE SPINELS, Solid state ionics, 93(3-4), 1997, pp. 219-225
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Citation: D. Aymes et al., EXPERIMENTAL SET-UP FOR DETERMINING THE TEMPERATURE-OXYGEN PARTIAL-PRESSURE CONDITIONS DURING SYNTHESIS OF SPINEL OXIDE NANOPARTICLES, Solid state ionics, 101, 1997, pp. 261-264
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Citation: E. Kester et al., CORRELATION BETWEEN OXIDATION-STATES OF TRANSITION-METAL IONS AND VARIATION OF THE COERCIVITY IN MIXED-VALENCE DEFECT SPINEL FERRITES, Solid state ionics, 101, 1997, pp. 457-463
Authors:
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Citation: E. Kester et al., VALENCE STATES OF COPPER IN COPPER FERRITE SPINELS CUXFE3-XO4 (0-LESS-THAN-X-LESS-THAN-OR-EQUAL-TO-1) FINE POWDERS - EVIDENCE OF COPPER INSERTION, Thermochimica acta, 297(1-2), 1997, pp. 71-78
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Citation: B. Gillot et al., CATIONIC DISTRIBUTION AND OXIDATION-KINETICS OF DIVALENT MANGANESE IONS IN IRON MANGANITE SPINELS MN3-XFEXO4 (0-LESS-THAN-X-LESS-THAN-1.50), Solid state ionics, 83(3-4), 1996, pp. 215-223
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Citation: E. Kester et al., THERMAL-BEHAVIOR AND CATION DISTRIBUTION OF SUBMICRON COPPER FERRITE SPINELS CUXFE3-XO4 LESS-THAN-OR-EQUAL-TO-X-LESS-THAN-OR-EQUAL-TO-0.5) STUDIED BY DTG, FTIR, AND XPS, Journal of solid state chemistry, 126(1), 1996, pp. 7-14
Citation: M. Laarj et al., CATIONIC DISTRIBUTION AND OXIDATION MECHANISM OF TRIVALENT MANGANESE IONS IN SUBMICROMETER MNXCOFE2-XO4 SPINEL FERRITES, Journal of solid state chemistry, 125(1), 1996, pp. 67-74
Citation: P. Perriat et al., A MODEL FOR OXIDATION IN FINELY DIVIDED FERRITES TAKING INTO ACCOUNT THE STRESSES GENERATED DURING REACTION, Journal of physics and chemistry of solids, 57(11), 1996, pp. 1641-1652