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1. Orienting the Pore Morphology of Core-Shell Magnetic Mesoporous Silica with the Sol-Gel Temperature. Influence on MRI and Magnetic Hyperthermia Properties

2. Unravelling the Thermal Decomposition Parameters for The Synthesis of Anisotropic Iron Oxide Nanoparticles

4. In situ liquid transmission electron microscopy reveals self-assembly-driven nucleation in radiolytic synthesis of iron oxide nanoparticles in organic media

5. Orienting the Pore Morphology of Core-Shell Magnetic Mesoporous Silica with the Sol-Gel Temperature. Influence on MRI and Magnetic Hyperthermia Properties

6. Core-shell iron oxide@stellate mesoporous silica for combined near-infrared photothermia and drug delivery: Influence of pH and surface chemistry

7. Iron Stearate Structures: An Original Tool for Nanoparticles Design

8. Assessing the parameters modulating optical losses of iron oxide nanoparticles under near infrared irradiation

9. Harnessing Composition of Iron Oxide Nanoparticle: Impact of Solvent-Mediated Ligand–Ligand Interaction and Competition between Oxidation and Growth Kinetics

10. A Confinement‐Driven Nucleation Mechanism of Metal Oxide Nanoparticles Obtained via Thermal Decomposition in Organic Media

11. Mastering bioactive coatings of metal oxide nanoparticles and surfaces through phosphonate dendrons

12. Strong interfacial coupling through exchange interactions in soft/hard core-shell nanoparticles as a function of cationic distribution

13. Contributors

14. Design of Anisotropic Iron-Oxide-Based Nanoparticles for Magnetic Hyperthermia

15. Unravelling the Thermal Decomposition Parameters for The Synthesis of Anisotropic Iron Oxide Nanoparticles

16. Iron Oxide Nanoparticles for Biomedical Applications: Synthesis, Functionalization, and Application

17. Dendron based antifouling, MRI and magnetic hyperthermia properties of different shaped iron oxide nanoparticles

18. Chapter 4. Iron-oxide Nanoparticle-based Contrast Agents

19. Design of iron oxide-based nanoparticles for MRI and magnetic hyperthermia

20. Unveiling the role of surface, size, shape and defects of iron oxide nanoparticles for theranostic applications

22. Evaluating the Critical Roles of Precursor Nature and Water Content When Tailoring Magnetic Nanoparticles for Specific Applications

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