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Nano-structural effects on Hematite (α-Fe2O3) nanoparticle radiofrequency heating
- Source :
- Nano Convergence, Vol 8, Iss 1, Pp 1-9 (2021), Nano Convergence
- Publication Year :
- 2021
- Publisher :
- SpringerOpen, 2021.
-
Abstract
- Nano-sized hematite (α-Fe2O3) is not well suited for magnetic heating via an alternating magnetic field (AMF) because it is not superparamagnetic—at its best, it is weakly ferromagnetic. However, manipulating the magnetic properties of nano-sized hematite (i.e., magnetic saturation (Ms), magnetic remanence (Mr), and coercivity (Hc)) can make them useful for nanomedicine (i.e., magnetic hyperthermia) and nanoelectronics (i.e., data storage). Herein we study the effects of size, shape, and crystallinity on hematite nanoparticles to experimentally determine the most crucial variable leading to enhancing the radio frequency (RF) heating properties. We present the synthesis, characterization, and magnetic behavior to determine the structure–property relationship between hematite nano-magnetism and RF heating. Increasing particle shape anisotropy had the largest effect on the specific adsorption rate (SAR) producing SAR values more than 6 × greater than the nanospheres (i.e., 45.6 ± 3 W/g of α-Fe2O3 nanorods vs. 6.89 W/g of α-Fe2O3 nanospheres), indicating α-Fe2O3 nanorods can be useful for magnetic hyperthermia.
- Subjects :
- Nanparticles
Materials science
Magnetism
lcsh:Biotechnology
Hematite
02 engineering and technology
lcsh:Chemical technology
01 natural sciences
lcsh:Technology
Heating
lcsh:TP248.13-248.65
0103 physical sciences
Dielectric heating
General Materials Science
lcsh:TP1-1185
lcsh:Science
010302 applied physics
Full Paper
lcsh:T
General Engineering
Coercivity
021001 nanoscience & nanotechnology
lcsh:QC1-999
Magnetic hyperthermia
Chemical engineering
Ferromagnetism
Remanence
visual_art
Radiofrequency
visual_art.visual_art_medium
Nanorod
lcsh:Q
0210 nano-technology
lcsh:Physics
Subjects
Details
- Language :
- English
- ISSN :
- 21965404
- Volume :
- 8
- Issue :
- 1
- Database :
- OpenAIRE
- Journal :
- Nano Convergence
- Accession number :
- edsair.doi.dedup.....571a230a46a4da7cff31ffc26f4dd07d