ACS Nano · 2015 · 96 citations · 62 references
NanoparticlesEngineeringMetal NanoparticlesBiomedical EngineeringCell VesiclesFerrofluidNanomedicineMagnetismMagnetite NanocubesBiophysicsPhysicsNanotechnologyMagnetic HyperthermiaNanoparticle ArrangementNanoscienceMagnetic NanoparticlesNanomaterialsNanoreactorNano-drug DeliveryNanomagnetism
One current challenge of magnetic hyperthermia is achieving therapeutic effects with a minimal amount of nanoparticles, for which improved heating abilities are continuously pursued. However, it is demonstrated here that the performance of magnetite nanocubes in a colloidal solution is reduced by 84% when they are densely packed in three-dimensional arrangements similar to those found in cell vesicles after nanoparticle internalization. This result highlights the essential role played by the nanoparticle arrangement in heating performance, uncontrolled in applications. A strategy based on the elaboration of nano-objects able to confine nanocubes in a fixed arrangement is thus considered here to improve the level of control. The obtained specific absorption rate results show that nanoworms and nanospheres with fixed one- and two-dimensional nanocube arrangements, respectively, succeed in reducing the loss of heating power upon agglomeration, suggesting a change in the kind of nano-object to be used in magnetic hyperthermia.
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Introduction to magnetic materials
Materials Today · 2009 · 5.6K citations · Full text
Magnetic Properties, Engineering, Magnetoelastic Materials +17
Monodisperse MFe<sub>2</sub>O<sub>4</sub> (M = Fe, Co, Mn) Nanoparticles
Shouheng Sun, Hao Zeng, David Robinson et al. · Journal of the American Chemical Society · 2003 · 3.4K citations