The nature of near-surface spin canting within Fe3O4 nanoparticles is highly debated. Here we develop a neutron scattering asymmetry analysis which quantifies the canting angle to between 23° and 42° at 1.2 T. Simultaneously, an energy-balance model is presented which reproduces the experimentally observed evolution of shell thickness and canting angle between 10 and 300 K. The model is based on the concept of Td site reorientation and indicates that surface canting involves competition between magnetocrystalline, dipolar, exchange, and Zeeman energies
Small-angle neutron scattering with polarization analysis reveals that Fe3O4 nanoparticles with 90 Å...
Spin-canting in spinel nanoparticles of maghemite has multiple origins, among which surface effects,...
The magnetic exchange coupling interaction between hard and soft magnetic phases has been important ...
Abstract Magnetic nanoparticles (MNPs) have become increasingly important in biomedical applications...
Magnetic nanoparticles (MNPs) have become increasingly important in biomedical applications like mag...
Polarization-analyzed small-angle neutron scattering methods are used to determine the spin morpholo...
Polarization-analyzed small-angle neutron-scattering methods are used to determine the spin arrangem...
Iron oxide nanoparticles are omnipresent in nature and of great importance for environmental science...
By means of polarized small-angle neutron scattering, we have resolved the long-standing challenge o...
Surface functionalization is found to prevent the reduction of saturation magnetization in magnetite...
Spin-wave excitations in α-Fe2O3 nanorods were directly detected using time-of-flight inelastic neut...
Title: Nanoparticles based on 3d metal oxides - correlation of structure and magnetism Author: RNDr....
The magnetic properties of nanoscale magnets are greatly influenced by surface anisotropy. So far, i...
Monodisperse maghemite nanoparticles with diameter ranging from 7 to 20 nm were examined by the In-f...
We report interparticle interactions effects on the magnetic structure of the surface region in Fe(3...
Small-angle neutron scattering with polarization analysis reveals that Fe3O4 nanoparticles with 90 Å...
Spin-canting in spinel nanoparticles of maghemite has multiple origins, among which surface effects,...
The magnetic exchange coupling interaction between hard and soft magnetic phases has been important ...
Abstract Magnetic nanoparticles (MNPs) have become increasingly important in biomedical applications...
Magnetic nanoparticles (MNPs) have become increasingly important in biomedical applications like mag...
Polarization-analyzed small-angle neutron scattering methods are used to determine the spin morpholo...
Polarization-analyzed small-angle neutron-scattering methods are used to determine the spin arrangem...
Iron oxide nanoparticles are omnipresent in nature and of great importance for environmental science...
By means of polarized small-angle neutron scattering, we have resolved the long-standing challenge o...
Surface functionalization is found to prevent the reduction of saturation magnetization in magnetite...
Spin-wave excitations in α-Fe2O3 nanorods were directly detected using time-of-flight inelastic neut...
Title: Nanoparticles based on 3d metal oxides - correlation of structure and magnetism Author: RNDr....
The magnetic properties of nanoscale magnets are greatly influenced by surface anisotropy. So far, i...
Monodisperse maghemite nanoparticles with diameter ranging from 7 to 20 nm were examined by the In-f...
We report interparticle interactions effects on the magnetic structure of the surface region in Fe(3...
Small-angle neutron scattering with polarization analysis reveals that Fe3O4 nanoparticles with 90 Å...
Spin-canting in spinel nanoparticles of maghemite has multiple origins, among which surface effects,...
The magnetic exchange coupling interaction between hard and soft magnetic phases has been important ...