Shaping Up Zn-Doped Magnetite Nanoparticles from Mono- and Bimetallic Oleates: The Impact of Zn Content, Fe Vacancies, and Morphology on Magnetic Hyperthermia Performance

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Shaping Up Zn-Doped Magnetite Nanoparticles from Mono- and Bimetallic  Oleates: The Impact of Zn Content, Fe Vacancies, and Morphology on Magnetic  Hyperthermia Performance
Pharmaceutics, Free Full-Text
Shaping Up Zn-Doped Magnetite Nanoparticles from Mono- and Bimetallic  Oleates: The Impact of Zn Content, Fe Vacancies, and Morphology on Magnetic  Hyperthermia Performance
Enhanced Toxic Dye Degradation Using Single Crystal Zn-doped Fe3O4
Shaping Up Zn-Doped Magnetite Nanoparticles from Mono- and Bimetallic  Oleates: The Impact of Zn Content, Fe Vacancies, and Morphology on Magnetic  Hyperthermia Performance
Enhanced Toxic Dye Degradation Using Single Crystal Zn-doped Fe3O4
Shaping Up Zn-Doped Magnetite Nanoparticles from Mono- and Bimetallic  Oleates: The Impact of Zn Content, Fe Vacancies, and Morphology on Magnetic  Hyperthermia Performance
XRD patterns of the sample series (a) INN and (b) AIC
Shaping Up Zn-Doped Magnetite Nanoparticles from Mono- and Bimetallic  Oleates: The Impact of Zn Content, Fe Vacancies, and Morphology on Magnetic  Hyperthermia Performance
Enhanced Toxic Dye Degradation Using Single Crystal Zn-doped Fe3O4
Shaping Up Zn-Doped Magnetite Nanoparticles from Mono- and Bimetallic  Oleates: The Impact of Zn Content, Fe Vacancies, and Morphology on Magnetic  Hyperthermia Performance
HR XPS Fe 2p (a) and Zn 2p (b) spectra of Zn 0.35 Fe 2.65 O 4
Shaping Up Zn-Doped Magnetite Nanoparticles from Mono- and Bimetallic  Oleates: The Impact of Zn Content, Fe Vacancies, and Morphology on Magnetic  Hyperthermia Performance
Size-Tunable Magnetite Nanoparticles from Well-Defined Iron Oleate
Shaping Up Zn-Doped Magnetite Nanoparticles from Mono- and Bimetallic  Oleates: The Impact of Zn Content, Fe Vacancies, and Morphology on Magnetic  Hyperthermia Performance
TGA (a) and DSC (b) curves of FeOl, ZnOl, and their mixture (x
Shaping Up Zn-Doped Magnetite Nanoparticles from Mono- and Bimetallic  Oleates: The Impact of Zn Content, Fe Vacancies, and Morphology on Magnetic  Hyperthermia Performance
PDF] Pushing up the magnetisation values for iron oxide
Shaping Up Zn-Doped Magnetite Nanoparticles from Mono- and Bimetallic  Oleates: The Impact of Zn Content, Fe Vacancies, and Morphology on Magnetic  Hyperthermia Performance
Nanomaterials, Free Full-Text
Shaping Up Zn-Doped Magnetite Nanoparticles from Mono- and Bimetallic  Oleates: The Impact of Zn Content, Fe Vacancies, and Morphology on Magnetic  Hyperthermia Performance
VB XPS spectra of Zn x Fe 3−x O 4 NPs at x = 0.00, 0.05, and 0.1
Shaping Up Zn-Doped Magnetite Nanoparticles from Mono- and Bimetallic  Oleates: The Impact of Zn Content, Fe Vacancies, and Morphology on Magnetic  Hyperthermia Performance
Nanomaterials, Free Full-Text
Shaping Up Zn-Doped Magnetite Nanoparticles from Mono- and Bimetallic  Oleates: The Impact of Zn Content, Fe Vacancies, and Morphology on Magnetic  Hyperthermia Performance
Isolation, Characterization and Hydrogen Sulfide H2S Sorption
Shaping Up Zn-Doped Magnetite Nanoparticles from Mono- and Bimetallic  Oleates: The Impact of Zn Content, Fe Vacancies, and Morphology on Magnetic  Hyperthermia Performance
Left Panel: PIXE spectra of all samples showing the pertinent
Shaping Up Zn-Doped Magnetite Nanoparticles from Mono- and Bimetallic  Oleates: The Impact of Zn Content, Fe Vacancies, and Morphology on Magnetic  Hyperthermia Performance
Size-Tunable Magnetite Nanoparticles from Well-Defined Iron Oleate
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