Magnetization and AC susceptibility measurements have been performed on ~3 nm NiO nanoparticles in powder form. The results indicate that the structure of the particles can be considered as consisting of an antiferromagnetically ordered core, with an uncompensated magnetic moment, and a magnetically disordered surface shell. The core magnetic moments block progressively with decreasing temperature, according to the distribution of their anisotropy energy barriers, as shown by a broad maximum of the low field zero-field-cooled magnetization (MZFC) and in the in-phase component χ' of the AC susceptibility, centred at ~70 K. On the other hand, surface spins thermally fluctuate and freeze in a disordered spin-glass-like state at much lower temp...
Magnetic properties of nanoparticle systems and spin glasses have been investigated theoretically, a...
We have investigated the effect of dipolar interactions on the superspin blocking and freezing of 10...
During the past few decades, the low temperature dynamics of magnetic nanoparticles and nanoclusters...
Magnetization and AC susceptibility measurements have been performed on ~3 nm NiO nanoparticles in p...
Nickel oxide nonoparticles successfully synthesized by a polymer percursor method are studied in thi...
NiO nanoparticles (NPs) with a nominal size range of 2–10 nm, synthesized via hightemperature pyroly...
In this investigation we seek to identify the magnetic behavior of Ni 0.5Zn0.5Fe2O4 nanoparticles th...
We report an alternative synthesis method and novel magnetic properties of Ni-oxide nanoparticles (N...
This chapter is aimed at studying the anomalous magnetic properties (glassy behaviour) observed at l...
In this investigation we seek to identify the magnetic behavior of Ni0.5Zn0.5Fe2O4 nanoparticles tho...
Magnetic nanoparticle ensembles have received a lot of attention, stemming in part from their curren...
Crystalline nickel oxide (NiO) nanoparticles dispersed in an amorphous silica matrix have been prepa...
We investigate magnetic nanocolloids based on 3.3 nm sized particles of manganese ferrite. The obser...
We have used dc-magnetization and ac-susceptibility to investigate the superspin dynamics in 9 nm av...
We have observed unusual magnetic properties of NiO (nickel oxide) nanoparticles embedded in a silic...
Magnetic properties of nanoparticle systems and spin glasses have been investigated theoretically, a...
We have investigated the effect of dipolar interactions on the superspin blocking and freezing of 10...
During the past few decades, the low temperature dynamics of magnetic nanoparticles and nanoclusters...
Magnetization and AC susceptibility measurements have been performed on ~3 nm NiO nanoparticles in p...
Nickel oxide nonoparticles successfully synthesized by a polymer percursor method are studied in thi...
NiO nanoparticles (NPs) with a nominal size range of 2–10 nm, synthesized via hightemperature pyroly...
In this investigation we seek to identify the magnetic behavior of Ni 0.5Zn0.5Fe2O4 nanoparticles th...
We report an alternative synthesis method and novel magnetic properties of Ni-oxide nanoparticles (N...
This chapter is aimed at studying the anomalous magnetic properties (glassy behaviour) observed at l...
In this investigation we seek to identify the magnetic behavior of Ni0.5Zn0.5Fe2O4 nanoparticles tho...
Magnetic nanoparticle ensembles have received a lot of attention, stemming in part from their curren...
Crystalline nickel oxide (NiO) nanoparticles dispersed in an amorphous silica matrix have been prepa...
We investigate magnetic nanocolloids based on 3.3 nm sized particles of manganese ferrite. The obser...
We have used dc-magnetization and ac-susceptibility to investigate the superspin dynamics in 9 nm av...
We have observed unusual magnetic properties of NiO (nickel oxide) nanoparticles embedded in a silic...
Magnetic properties of nanoparticle systems and spin glasses have been investigated theoretically, a...
We have investigated the effect of dipolar interactions on the superspin blocking and freezing of 10...
During the past few decades, the low temperature dynamics of magnetic nanoparticles and nanoclusters...