Size Dependence of Metal-Insulator Transition in Stoichiometric Fe3O4 Nanocrystals
arXiv:1506.05195 · doi:10.1021/acs.nanolett.5b00331
Abstract
Magnetite (Fe3O4) is one of the most actively studied materials with a famous metal-insulator transition (MIT), so-called the Verwey transition at around 123 K. Despite the recent progress in synthesis and characterization of Fe3O4 nanocrystals (NCs), it is still an open question how the Verwey transition changes on a nanometer scale. We herein report the systematic studies on size dependence of the Verwey transition of stoichiometric Fe3O4 NCs. We have successfully synthesized stoichiometric and uniform-sized Fe3O4 NCs with sizes ranging from 5 to 100 nm. These stoichiometric Fe3O4 NCs show the Verwey transition when they are characterized by conductance, magnetization, cryo-XRD, and heat capacity measurements. The Verwey transition is weakly size-dependent and becomes suppressed in NCs smaller than 20 nm before disappearing completely for less than 6 nm, which is a clear, yet highly interesting indication of a size effect of this well-known phenomena. Our current work will shed new light on this ages-old problem of Verwey transition.
18 pages, 4 figures, Nano Letters (accepted)
References in corpus (1)
Cited by in corpus (9)
- SQUID-on-tip with single-electron spin sensitivity for high-field and ultra-low temperature nanomagnetic imaging
- Quantitative measurements of size-dependent magnetoelectric coupling in Fe3O4 nanoparticles
- Slow oxidation of magnetite nanoparticles elucidates the limits of the Verwey transition
- Giant thermal hysteresis in Verwey transition of single domain Fe3O4 nanoparticles
- Onion-like Fe3O4/MgO/CoFe2O4 magnetic nanoparticles: new ways to control magnetic coupling between soft/hard phases
- Response of the Verwey transition in magnetite to a controlled point-like disorder induced by 2.5 MeV electron irradiation
- Size effects in the Verwey transition of nanometer-thick micron-wide magnetite crystals
- Magnetite nano-islands on silicon-carbide with graphene
- Non-Altermagnetic Origin of Exchange Bias Behaviors in Incoherent RuO/Fe Bilayer Heterostructures