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Nanoceramics of metastable ε-Fe2O3: effect of sintering on the magnetic properties and sub-terahertz electron resonance.
Gorbachev, Evgeny A; Alyabyeva, Liudmila N; Soshnikov, Miroslav V; Lebedev, Vasily A; Morozov, Anatolii V; Kozlyakova, Ekaterina S; Ahmed, Asmaa; Eliseev, Artem A; Trusov, Lev A.
Affiliation
  • Gorbachev EA; Department of Chemistry, Lomonosov Moscow State University, Moscow, 119991, Russia. ev.a.gorbachev@gmail.com.
  • Alyabyeva LN; Laboratory of Terahertz Spectroscopy, Center for Photonics and 2D Materials, Moscow Institute of Physics and Technology, Dolgoprudny, 171701, Russia.
  • Soshnikov MV; Laboratory of Terahertz Spectroscopy, Center for Photonics and 2D Materials, Moscow Institute of Physics and Technology, Dolgoprudny, 171701, Russia.
  • Lebedev VA; Department of Materials Science, Lomonosov Moscow State University, Moscow, 119991, Russia.
  • Morozov AV; Bernal Institute, University of Limerick, Limerick, V94 T9PX, Ireland.
  • Kozlyakova ES; Center for Energy Science and Technology, Skolkovo Institute of Science and Technology, Moscow, Russia.
  • Ahmed A; Department of Physics, Lomonosov Moscow State University, Moscow, 119991, Russia.
  • Eliseev AA; Laboratory of Terahertz Spectroscopy, Center for Photonics and 2D Materials, Moscow Institute of Physics and Technology, Dolgoprudny, 171701, Russia.
  • Trusov LA; Department of Physics, Faculty of Science, Sohag University, Sohag, 82524, Egypt.
Mater Horiz ; 10(9): 3631-3642, 2023 Aug 29.
Article in En | MEDLINE | ID: mdl-37337936
ABSTRACT
In this study, we demonstrate the sintering of metastable ε-Fe2O3 nanoparticles into nanoceramics containing 98 wt% of the epsilon iron oxide phase and with a specific density of 60%. At room temperature, the ceramics retain a giant coercivity of 20 kOe and a sub-terahertz absorption at 190 GHz inherent in the initial nanoparticles. The sintering leads to an increase in the frequencies of the natural ferromagnetic resonance at 200-300 K and larger coercivities at temperatures below 150 K. We propose a simple but working explanation of the low-temperature dynamics of the macroscopic magnetic parameters of the ε-Fe2O3 materials via the transition of the smallest nanoparticles into a superparamagnetic state. The results are confirmed by the temperature dependence of the magnetocrystalline anisotropy constant and micromagnetic modeling. In addition, based on the Landau-Lifshitz formalism, we discuss features of the spin dynamics in ε-Fe2O3 and the possibility of using nanoceramics as sub-terahertz spin-pumping media. Our observations will expand the applicability of ε-Fe2O3 materials and promote their integration into telecommunication devices of the next generation.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Mater Horiz Year: 2023 Document type: Article Affiliation country: Rusia

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Mater Horiz Year: 2023 Document type: Article Affiliation country: Rusia