Here we report on the impact of reducing the crystalline size on the structural and magnetic properties of γ-Fe2O3 maghemite nanoparticles. A set of polycrystalline specimens with crystallite size ranging from ~2 to ~50 nm was obtained combining microwave plasma synthesis and commercial samples. Crystallite size was derived by electron microscopy and synchrotron powder diffraction, which was used also to investigate the crystallographic structure. The local atomic structure was inquired combining pair distribution function (PDF) and X-ray absorption spectroscopy (XAS). PDF revealed that reducing the crystal dimension induces the depletion of the amount of Fe tetrahedral sites. XAS confirmed significant bond distance expansion and a loose Fe...
In contrast to bulk materials, nanoscale crystal growth is critically influenced by size- and shape2...
In contrast to bulk materials, nanoscale crystal growth is critically influenced by size- and shape-...
In the present work, we investigate the magnetic properties of ferrimagnetic and noninteracting magh...
Here we report on the impact of reducing the crystalline size on the structural and magnetic propert...
Here we report on the impact of reducing the crystalline size on the structural and magnetic propert...
International audienceHere we report on the impact of reducing the crystalline size on the structura...
Synchrotron radiation X-ray scattering and X-ray absorption spectroscopy techniques have been used t...
The fine control of iron oxide nanocrystal sizes within the nanometre scale (diameters range from 2....
Interest in creating magnetic metamaterials has led to methods for growing superstructures of magnet...
Iron oxide nanoparticles are omnipresent in nature and of great importance for environmental science...
The structure of nano-crystalline Fe₂O₃ particles, synthesized using the microwave plasma technique,...
Single phase magnetite powders with crystallite sizes ranging from 8-50 nm were synthesised and stud...
We use XMCD at the L2,3 edges of iron to analyze the site-specific magnetic contributions of ions in ...
This work presents the results of an investigation on maghemite (γ -Fe2O3) nanoparticles magnetic pr...
Homogeneous maghemite (γ-Fe2O3) nanoparticles with an average crystal size around 5 nm were synthesi...
In contrast to bulk materials, nanoscale crystal growth is critically influenced by size- and shape2...
In contrast to bulk materials, nanoscale crystal growth is critically influenced by size- and shape-...
In the present work, we investigate the magnetic properties of ferrimagnetic and noninteracting magh...
Here we report on the impact of reducing the crystalline size on the structural and magnetic propert...
Here we report on the impact of reducing the crystalline size on the structural and magnetic propert...
International audienceHere we report on the impact of reducing the crystalline size on the structura...
Synchrotron radiation X-ray scattering and X-ray absorption spectroscopy techniques have been used t...
The fine control of iron oxide nanocrystal sizes within the nanometre scale (diameters range from 2....
Interest in creating magnetic metamaterials has led to methods for growing superstructures of magnet...
Iron oxide nanoparticles are omnipresent in nature and of great importance for environmental science...
The structure of nano-crystalline Fe₂O₃ particles, synthesized using the microwave plasma technique,...
Single phase magnetite powders with crystallite sizes ranging from 8-50 nm were synthesised and stud...
We use XMCD at the L2,3 edges of iron to analyze the site-specific magnetic contributions of ions in ...
This work presents the results of an investigation on maghemite (γ -Fe2O3) nanoparticles magnetic pr...
Homogeneous maghemite (γ-Fe2O3) nanoparticles with an average crystal size around 5 nm were synthesi...
In contrast to bulk materials, nanoscale crystal growth is critically influenced by size- and shape2...
In contrast to bulk materials, nanoscale crystal growth is critically influenced by size- and shape-...
In the present work, we investigate the magnetic properties of ferrimagnetic and noninteracting magh...