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Magnetic Properties of Magnetic Nanoparticles for Efficient Hyperthermia

Nanomaterials · 2015 · Vol. 5(1) · pp. 63–89
Ihab M. ObaidatBashar IssaYousef Haik

Abstract

Localized magnetic hyperthermia using magnetic nanoparticles (MNPs) under the application of small magnetic fields is a promising tool for treating small or deep-seated tumors. For this method to be applicable, the amount of MNPs used should be minimized. Hence, it is essential to enhance the power dissipation or heating efficiency of MNPs. Several factors influence the heating efficiency of MNPs, such as the amplitude and frequency of the applied magnetic field and the structural and magnetic properties of MNPs. We discuss some of the physics principles for effective heating of MNPs focusing on the role of surface anisotropy, interface exchange anisotropy and dipolar interactions. Basic magnetic properties of MNPs such as their superparamagnetic behavior, are briefly reviewed. The influence of temperature on anisotropy and magnetization of MNPs is discussed. Recent development in self-regulated hyperthermia is briefly discussed. Some physical and practical limitations of using MNPs in magnetic hyperthermia are also briefly discussed.

Characterization and Applications of Magnetic NanoparticlesNanoparticle-Based Drug DeliveryMagnetic properties of thin filmsMagnetic nanoparticlesSuperparamagnetismMagnetic hyperthermiaMaterials scienceMagnetic anisotropyNanoparticleMagnetic fieldMagnetizationNanotechnologyAnisotropy

Funding

  • National Research Foundation
Citations
477
FWCI
21.23
field-weighted impact
References
140
Percentile
100%
vs. same field & year
Citations per year
References
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