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Understanding the Nucleation and Growth of Iron Oxide Nanoparticle Formation by a “Heating-Up” Process: An NMR Relaxation Study, characterized by a burst of nucleation and separation of nucleation and growth under continuous monomer supply

Spin crossover properties of Fe(III) complexes in [Fe (bzacen)(tvp)]BPh4·nSolv chain structures: EPR study

Influence of oxygen vacancies on magnetic and dielectric properties of nanocrystaline barium titanate of the concentration of oxygen vacancies during prolonged annealing in hydrogen leads to a noticeable increase

Magnetic properties of ludwigite Mn2.25Co0.75BO5 this temperature the magnetic properties demonstrated the angular dependence and the high magnetic hardness in a

Magnetic properties of li3 v2 (Po4 )3 /li3 po4 composite, which can be potentially used as a cathode material in lithium-ion batteries. Li3 V2 (PO4 )3 /Li3 PO4

Antiferromagnetism of the cation-ordered warwickite system Mn2-xMgxBO4 (x = 0.5, 0.6 and 0.7) for all samples with the space group P21/n. The M1 site is occupied by trivalent Mn ions while the M2 site

Antiferromagnetism of the cation-ordered warwickite system Mn2-xMgxBO4 (x = 0.5, 0.6 and 0.7) while the M2 site is occupied by a mixture of divalent Mg and Mn ions. Regular cation and charge

Magnetic properties and vanadium oxidation state in α-Li3V2(PO4)3/C composite: Magnetization and ESR measurements composite, which can be potentially used as a cathode material in a lithium ion battery. Magnetization

The Spectral and Magnetic Properties of Er3+ and Yb3+ Ions in Y2Ti2O7 Crystals with a Pyrochlore Structure>Ti2O7 Crystals with a Pyrochlore Structure

Iron oxidation state in La0.7Sr1.3Fe0.7Ti0.3O4 and La0.5Sr1.5Fe0.5Ti0.5O4 layered perovskites: Magnetic properties structure were synthesized using a solid state method. Structural properties of obtained samples were

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