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2. Iron wool as a heating agent for magnetic catalysis: Experiments and analysis of heating properties under a high-frequency magnetic field.

5. Magnetic hyperthermia properties of nanoparticles inside lysosomes using kinetic Monte-Carlo simulations : influence of key parameters, of dipolar interactions and spatial variation of heating power

6. An air-cooled Litz wire coil for measuring the high frequency hysteresis loops of magnetic samples : a useful setup for magnetic hyperthermia applications

7. Increase of magnetic hyperthermia efficiency due to dipolar interactions in low anisotropy magnetic nanoparticles : theoretical and experimental results

8. Influence of a transverse static magnetic field on the magnetic hyperthermia properties and high-frequency hysteresis loops of ferromagnetic FeCo nanoparticles

9. Simple models for dynamic hysteresis loops calculation: Application to hyperthermia optimization

10. Magnetic anisotropy determination and magnetic hyperthermia properties of small Fe nanoparticles in the superparamagnetic regime

11. Room temperature Giant Spin-dependent Photoconductivity in dilute nitride semiconductors

12. Large specific absorption rates in the magnetic hyperthermia properties of metallic iron nanocubes

13. Magnetic hyperthermia in single-domain monodisperse FeCo nanoparticles: Evidences for Stoner-Wohlfarth behaviour and large losses

14. Magnetoresistance and collective Coulomb blockade in super-lattices of ferromagnetic CoFe nanoparticles

15. A frequency-adjustable electromagnet for hyperthermia measurements on magnetic nanoparticles

16. Nanolithography based on real-time electrically-controlled indentation with an atomic force microscope for nanocontacts elaboration

23. A setup to measure the temperature-dependent heating power of magnetically heated nanoparticles up to high temperature

24. Spin crossover in Fe(triazole)-Pt nanoparticle self-assembly structured at the sub-5 nm scale

25. Spin crossover in Fe(triazole)-Pt nanoparticle self-assembly structured at the sub-5 nm scale

31. Simple models for dynamic hysteresis loop calculations of magnetic single-domain nanoparticles: Application to magnetic hyperthermia optimization.

32. Magnetic hyperthermia in single-domain monodisperse FeCo nanoparticles: Evidences for Stoner–Wohlfarth behavior and large losses.

33. Spark-eroded particles: Influence of processing parameters.

34. Capacitance variation of an assembly of clusters in the Coulomb blockade regime.

35. Magnetic anisotropy determination and magnetic hyperthermia properties of small Fe nanoparticles in the superparamagnetic regime

36. Ultrasmall iron nanoparticles: effect of size reduction on anisotropy and magnetization

37. Silica coated iron nanoparticles: synthesis, interface control, magnetic and hyperthermia properties

38. High time resolution thermometry on a magnetic nanoheater. A new tool for hyperthermia

39. Magnetic nanoplatform incorporating a molecular thermometer. A new tool for local hyperthermia

40. Effects of inter- and intra-aggregate magnetic dipolar interactions on the magnetic heating efficiency of iron oxide nanoparticles

41. A molecular device for the simultaneous magnetic-induced heating and temperature measurement. Mapping temperature distribution inside a cell

42. Competitive effects of dipolar interactions and a bias magnetic field on the magnetic relaxation times of Co clusters

43. Capteur de gaz à base de nanoparticules : synthèse de nano-objets par voie chimique, intégration et caractérisation de capteurs élaborés en salle blanche

45. Effects of inter- and intra-aggregate magnetic dipolar interactions on the magnetic heating efficiency of iron oxide nanoparticles

48. Multifunctional nanoplatform for biomedical applications

50. Joining time-resolved thermometry and magnetic-induced heating in a single nanoparticle unveils intriguing thermal properties

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