DOMINANTMAG
Development of epsilon – iron oxide – based nanocomposites: Towards the next – generation rare- earth – free magnets
Akronim / šifra: DOMINANTMAG / 7551
NIO nosilac projekta: Univerzitet u Beogradu - Institut za nuklearne nauke „Vinča“
Rukovodilac projekta: Marin Tadić, naučni savetnik
Projekat finansira: Fond za nauku Republike Srbije
Program: PRIZMA
Period realizacije: 2023 - 2026.
Website: dominantmag.com
Najnovije
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Structure-property coupling in cracked iron oxide nanoparticles: Synthesis conditions, magnetic properties, MRI relaxivity and biocompatibility
(Journal of Alloys and Compounds, 2026) -
Structure-property coupling in cracked iron oxide nanoparticles: Synthesis conditions, magnetic properties, MRI relaxivity and biocompatibility
(Journal of Alloys and Compounds, 2026) -
Solvothermal synthesis of hematite (α-Fe2O3) nanoparticles: Influence of surfactants on morphology, magnetic anisotropy, MRI relaxivity and biocompatibility
(Inorganic Chemistry Communications, 2025) -
Low-coercivity behavior and biomedical potential of cube-like and rounded hematite (α-Fe2O3) nanoparticles: Insights from hydrothermal synthesis
(Materials Science and Engineering. B: Advanced Functional Solid-State Materials, 2025) -
SPION clusters with porous silica shell: Synthesis, core-shell structure, magnetic properties, biocompatibility and MRI application
(Ceramics International, 2025) -
Low-coercivity behavior and biomedical potential of cube-like and rounded hematite (α-Fe2O3) nanoparticles: Insights from hydrothermal synthesis
(Materials Science and Engineering. B: Advanced Functional Solid-State Materials, 2025) -
Solvothermal synthesis of hematite (α-Fe2O3) nanoparticles: Influence of surfactants on morphology, magnetic anisotropy, MRI relaxivity and biocompatibility
(Inorganic Chemistry Communications, 2025) -
Nickel films deposited between amorphous silicon layers: Effects of annealing, Ni/Si interface and magnetic properties
(Applied Surface Science, 2025) -
Silica matrix-driven modulation of ferrite nanoparticles: Insights into synthesis, coercivity and magnetization
(Inorganic Chemistry Communications, 2025) -
Silica matrix-driven modulation of ferrite nanoparticles: Insights into synthesis, coercivity and magnetization
(Inorganic Chemistry Communications, 2025) -
SPION clusters with porous silica shell: Synthesis, core-shell structure, magnetic properties, biocompatibility and MRI application
(Ceramics International, 2025) -
Nickel films deposited between amorphous silicon layers: Effects of annealing, Ni/Si interface and magnetic properties
(Applied Surface Science, 2025)
