Magnetic nanoparticles represent complex but very interesting objects. They combine the bulk properties with novel phenomena emerging at the nanoscale due to finite-size effects. The recent development of the synthetic procedures allows having a strong control on the size and shape of individual particles and on their physical-chemical structure. Among different magnetic materials, spinel ferrite nanoparticles offer strong chemical and physical stability as well as tunable magnetic properties. In the present article, we investigate the effect of Zn substitution in cobalt ferrite nanoparticles. The technological development of nanoparticle-based magnetic materials aims to find a balance between a well-defined magnetic behavior of individual ...
The possibility to finely control nanostructured cubic ferrites (MIIFe2O4) paves the way to design m...
Magnetic properties of iron oxide nanoparticles with spinel structure are strictly related to a comp...
Spinel ferrite magnetic nanoparticles have attracted considerable attention because of their high an...
Magnetic nanoparticles represent complex but very interesting objects. They combine the bulk propert...
Magnetic nanoparticles represent complex but very interesting objects. They combine the bulk propert...
Magnetic nanoparticles represent complex but very interesting objects. They combine the bulk propert...
Magnetic nanoparticles represent complex but very interesting objects. They combine the bulk propert...
Zinc substitution is often proposed as an efficient strategy to improve the performances of spinel f...
Zinc substitution is often proposed as an efficient strategy to improve the performances of spinel f...
Zinc substitution is often proposed as an efficient strategy to improve the performances of spinel f...
Zinc substitution is often proposed as an efficient strategy to improve the performances of spinel f...
Zinc substitution is often proposed as an efficient strategy to improve the performances of spinel f...
Zinc substitution is often proposed as an efficient strategy to improve the performances of spinel f...
Zinc substitution is often proposed as an efficient strategy to improve the performances of spinel f...
The macroscopic magnetic behavior of nanoparticulated systems is the result of several contributions...
The possibility to finely control nanostructured cubic ferrites (MIIFe2O4) paves the way to design m...
Magnetic properties of iron oxide nanoparticles with spinel structure are strictly related to a comp...
Spinel ferrite magnetic nanoparticles have attracted considerable attention because of their high an...
Magnetic nanoparticles represent complex but very interesting objects. They combine the bulk propert...
Magnetic nanoparticles represent complex but very interesting objects. They combine the bulk propert...
Magnetic nanoparticles represent complex but very interesting objects. They combine the bulk propert...
Magnetic nanoparticles represent complex but very interesting objects. They combine the bulk propert...
Zinc substitution is often proposed as an efficient strategy to improve the performances of spinel f...
Zinc substitution is often proposed as an efficient strategy to improve the performances of spinel f...
Zinc substitution is often proposed as an efficient strategy to improve the performances of spinel f...
Zinc substitution is often proposed as an efficient strategy to improve the performances of spinel f...
Zinc substitution is often proposed as an efficient strategy to improve the performances of spinel f...
Zinc substitution is often proposed as an efficient strategy to improve the performances of spinel f...
Zinc substitution is often proposed as an efficient strategy to improve the performances of spinel f...
The macroscopic magnetic behavior of nanoparticulated systems is the result of several contributions...
The possibility to finely control nanostructured cubic ferrites (MIIFe2O4) paves the way to design m...
Magnetic properties of iron oxide nanoparticles with spinel structure are strictly related to a comp...
Spinel ferrite magnetic nanoparticles have attracted considerable attention because of their high an...