Hematite at room temperature is a weak ferromagnetic material. Its permanent magnetization is three orders smaller than for magnetite. Thus, hematite colloids allow us to explore a different physical range of particle interaction parameters compared to ordinary ferromagnetic particle colloids. In this paper we investigate a colloid consisting of hematite particles with cubic shape. We search for energetically favorable structures in an external magnetic field with analytical and numerical methods and molecular dynamics simulations and analyze whether it is possible to observe them in experiments. We find that energetically favorable configurations are observable only for short chains. Longer chains usually contain kinks which are formed in ...
The present paper discusses some properties of small, elongated particles suspended in a nematic or ...
The present paper discusses some properties of small, elongated particles suspended in a nematic or ...
For magnetite spherical nanoparticles, the orientation of the dipole moment in the crystal does not ...
Sem informaçãoWe made Monte Carlo simulations of the energy distribution and magnetic moment contrib...
The search for spintronic materials that combine both semiconducting and ferromagnetic (FM) properti...
We characterize the structural properties of magnetic ellipsoidal hematite colloids with an aspect r...
We characterize the structural properties of magnetic ellipsoidal hematite colloids with an aspect r...
For magnetite spherical nanoparticles, the orientation of the dipole moment in the crystal does not ...
For magnetite spherical nanoparticles, the orientation of the dipole moment in the crystal does not ...
For magnetite spherical nanoparticles, the orientation of the dipole moment in the crystal does not ...
\u3cp\u3eFor magnetite spherical nanoparticles, the orientation of the dipole moment in the crystal ...
We present the synthesis, characterization, and magnetic properties of hematite particles in a pecul...
The structure of spontaneously formed crystals in the sediments of colloidal hematite (α-Fe2O3) cube...
The structure of spontaneously formed crystals in the sediments of colloidal hematite (α-Fe2O3) cube...
Microstructure and magnetic properties of monodispersed pseudocubic and trapezoidal particles with v...
The present paper discusses some properties of small, elongated particles suspended in a nematic or ...
The present paper discusses some properties of small, elongated particles suspended in a nematic or ...
For magnetite spherical nanoparticles, the orientation of the dipole moment in the crystal does not ...
Sem informaçãoWe made Monte Carlo simulations of the energy distribution and magnetic moment contrib...
The search for spintronic materials that combine both semiconducting and ferromagnetic (FM) properti...
We characterize the structural properties of magnetic ellipsoidal hematite colloids with an aspect r...
We characterize the structural properties of magnetic ellipsoidal hematite colloids with an aspect r...
For magnetite spherical nanoparticles, the orientation of the dipole moment in the crystal does not ...
For magnetite spherical nanoparticles, the orientation of the dipole moment in the crystal does not ...
For magnetite spherical nanoparticles, the orientation of the dipole moment in the crystal does not ...
\u3cp\u3eFor magnetite spherical nanoparticles, the orientation of the dipole moment in the crystal ...
We present the synthesis, characterization, and magnetic properties of hematite particles in a pecul...
The structure of spontaneously formed crystals in the sediments of colloidal hematite (α-Fe2O3) cube...
The structure of spontaneously formed crystals in the sediments of colloidal hematite (α-Fe2O3) cube...
Microstructure and magnetic properties of monodispersed pseudocubic and trapezoidal particles with v...
The present paper discusses some properties of small, elongated particles suspended in a nematic or ...
The present paper discusses some properties of small, elongated particles suspended in a nematic or ...
For magnetite spherical nanoparticles, the orientation of the dipole moment in the crystal does not ...