Understanding the correlations between magnetic nanoparticles is important for nanotechnologies, such as high-density magnetic recording and biomedical applications, where functionalized magnetic particles are used as contrast agents and for drug delivery. The ability to control the magnetic state of individual particles depends on the good knowledge of the magnetic correlations between particles when assembled. Inaccessible via standard magnetometry techniques, nanoscale magnetic ordering in self-assemblies of Fe3O4 nanoparticles is here unveiled via X-ray resonant magnetic scattering (XRMS). Measured throughout the magnetization process, the XRMS signal reveals size-dependent inter-particle magnetic correlations. Smaller (5 nm) particles ...
This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.-- et al.The inti...
Magnetic properties, arising from surface exchange and interparticle interactions of the Fe3O4 (magn...
Magnetostatic (dipolar) interactions between nanoparticles promise to open new ways to design nanocr...
Understanding the correlations between magnetic nanoparticles is important for nanotechnologies, suc...
Polarization-analyzed small-angle neutron-scattering methods are used to determine the spin arrangem...
Some of the synthesis methods and physical properties of iron oxide-based magnetic nanoparticles suc...
Fe3O4 [Magnetite] nanoparticles have magnetism that differs greatly from their bulk counterparts. Wh...
The magnetic behavior of Fe3-xO4 nanoparticles synthesized by either high-temperature decomposition ...
Highly crystalline single-domain magnetite Fe3O4 nanoparticles (NPs) are important, not only for fun...
This work reports on the experimental characterization of the magnetic domain configurations in cubi...
We illustrate how to extract correlations between magnetic moments in assemblies of nanoparticles fr...
In this thesis, a magnetic study of two dierent arrangements of Fe3O4 nanoparticles is presented. Th...
We report interparticle interactions effects on the magnetic structure of the surface region in Fe(3...
We present a synchrotron-based x-ray scattering technique which allows disentangling magnetic proper...
Magnetic order in two-dimensional islands of spherical 21 nm cobalt-ferrite (CoFe2O4) nanoparticles ...
This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.-- et al.The inti...
Magnetic properties, arising from surface exchange and interparticle interactions of the Fe3O4 (magn...
Magnetostatic (dipolar) interactions between nanoparticles promise to open new ways to design nanocr...
Understanding the correlations between magnetic nanoparticles is important for nanotechnologies, suc...
Polarization-analyzed small-angle neutron-scattering methods are used to determine the spin arrangem...
Some of the synthesis methods and physical properties of iron oxide-based magnetic nanoparticles suc...
Fe3O4 [Magnetite] nanoparticles have magnetism that differs greatly from their bulk counterparts. Wh...
The magnetic behavior of Fe3-xO4 nanoparticles synthesized by either high-temperature decomposition ...
Highly crystalline single-domain magnetite Fe3O4 nanoparticles (NPs) are important, not only for fun...
This work reports on the experimental characterization of the magnetic domain configurations in cubi...
We illustrate how to extract correlations between magnetic moments in assemblies of nanoparticles fr...
In this thesis, a magnetic study of two dierent arrangements of Fe3O4 nanoparticles is presented. Th...
We report interparticle interactions effects on the magnetic structure of the surface region in Fe(3...
We present a synchrotron-based x-ray scattering technique which allows disentangling magnetic proper...
Magnetic order in two-dimensional islands of spherical 21 nm cobalt-ferrite (CoFe2O4) nanoparticles ...
This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.-- et al.The inti...
Magnetic properties, arising from surface exchange and interparticle interactions of the Fe3O4 (magn...
Magnetostatic (dipolar) interactions between nanoparticles promise to open new ways to design nanocr...