Magnetic nanocomposites constitute a vital class of technologically relevant materials, in particular for next-generation applications ranging from biomedicine, catalysis, and energy devices. Key to designing such materials is determining and controlling the extent of magnetic coupling in them. In this work, we show how the magnetic coupling in bi-magnetic nanocomposites can be controlled by the growth technique. Using four different synthesis strategies to prepare prototypical LaFeO3-CoFe2O4 and LaFeO3-Co0.5Zn0.5Fe2O4 nanocomposite systems, and by performing comprehensive magnetic measurements, we demonstrate that the final material exhibits striking differences in their magnetic coupling that is distinct to the growth method. Through stru...
Functional oxide nanocomposites, where the individual components belong to the family of strongly co...
Functional oxide nanocomposites, where the individual components belong to the family of strongly co...
The properties of magnetic nanocomposites rely strongly on the interplay between those of the consti...
Magnetic nanocomposites constitute a vital class of technologically relevant materials, in particula...
Magnetic nanocomposites constitute a vital class of technologically relevant materials, in particula...
Magnetic nanocomposites constitute a vital class of technologically relevant materials, in particula...
Magnetic nanocomposites constitute a vital class of technologically relevant materials, in particula...
Magnetic nanocomposites constitute a vital class of technologically relevant materials, in particula...
Magnetic nanocomposites constitute a vital class of technologically relevant materials, in particula...
Magnetic nanocomposites constitute a vital class of technologically relevant materials, in particula...
Magnetic nanocomposites constitute a vital class of technologically relevant materials, in particula...
Functional oxide nanocomposites, where the individual components belong to the family of strongly co...
Functional oxide nanocomposites, where the individual components belong to the family of strongly co...
Functional oxide nanocomposites, where the individual components belong to the family of strongly co...
Functional oxide nanocomposites, where the individual components belong to the family of strongly co...
Functional oxide nanocomposites, where the individual components belong to the family of strongly co...
Functional oxide nanocomposites, where the individual components belong to the family of strongly co...
The properties of magnetic nanocomposites rely strongly on the interplay between those of the consti...
Magnetic nanocomposites constitute a vital class of technologically relevant materials, in particula...
Magnetic nanocomposites constitute a vital class of technologically relevant materials, in particula...
Magnetic nanocomposites constitute a vital class of technologically relevant materials, in particula...
Magnetic nanocomposites constitute a vital class of technologically relevant materials, in particula...
Magnetic nanocomposites constitute a vital class of technologically relevant materials, in particula...
Magnetic nanocomposites constitute a vital class of technologically relevant materials, in particula...
Magnetic nanocomposites constitute a vital class of technologically relevant materials, in particula...
Magnetic nanocomposites constitute a vital class of technologically relevant materials, in particula...
Functional oxide nanocomposites, where the individual components belong to the family of strongly co...
Functional oxide nanocomposites, where the individual components belong to the family of strongly co...
Functional oxide nanocomposites, where the individual components belong to the family of strongly co...
Functional oxide nanocomposites, where the individual components belong to the family of strongly co...
Functional oxide nanocomposites, where the individual components belong to the family of strongly co...
Functional oxide nanocomposites, where the individual components belong to the family of strongly co...
The properties of magnetic nanocomposites rely strongly on the interplay between those of the consti...