We experimentally show that it is possible to induce room-temperature ferromagnetic-like behavior in ZnO nanoparticles without doping with magnetic impurities but simply inducing an alteration of their electronic configuration. Capping ZnO nanoparticles (similar to 10 nm size) with different organic molecules produces an alteration of their electronic configuration that depends on the particular molecule, as evidenced by photoluminescence and X-ray absorption spectroscopies and altering their magnetic properties that varies from diamagnetic to ferromagnetic-like behavior
Extensive calculations based on density functional theory have been carried out to understand the or...
In this work, the structural, chemical and magnetic properties of ZnO:Mn nanorods were investigated....
Since Dietl et al. predicted that Co-doped ZnO may show room-temperature ferromagnetism (RTFM) in 20...
We present here direct experimental evidence of the magnetic polarization of Zn atoms in ZnO nanopar...
Four independent sets of Zn1-xMxO (M=Co or Fe) nanoparticle were produced using chemical hydrolysis ...
Complementary to the experimental finding that ZnO nanoparticles become ferromagnetic when coated wi...
Complementary to the experimental finding that ZnO nanoparticles become ferromagnetic when coated wi...
We report here on the magnetic properties of ZnO:Mn- and ZnO:Co-doped nanoparticles. We have found t...
This study reports on a new solution phase synthesis leading to cobalt and manganese doped ZnO which...
Recent claims that ferromagnetism can be produced in nanoparticles of metal oxides without the prese...
Recent claims that ferromagnetism can be produced in nanoparticles of metal oxides without the prese...
We report the novel result regarding the observation of unusual magnetic behavior with high magnetic...
Complementary to the experimental finding that ZnO nanoparticles become ferromagnetic when coated wi...
We report the intrinsic room-temperature ferromagnetism in undoped ZnO nanoparticles with different ...
We have studied the influence of intrinsic and extrinsic defects in the magnetic and electrical tran...
Extensive calculations based on density functional theory have been carried out to understand the or...
In this work, the structural, chemical and magnetic properties of ZnO:Mn nanorods were investigated....
Since Dietl et al. predicted that Co-doped ZnO may show room-temperature ferromagnetism (RTFM) in 20...
We present here direct experimental evidence of the magnetic polarization of Zn atoms in ZnO nanopar...
Four independent sets of Zn1-xMxO (M=Co or Fe) nanoparticle were produced using chemical hydrolysis ...
Complementary to the experimental finding that ZnO nanoparticles become ferromagnetic when coated wi...
Complementary to the experimental finding that ZnO nanoparticles become ferromagnetic when coated wi...
We report here on the magnetic properties of ZnO:Mn- and ZnO:Co-doped nanoparticles. We have found t...
This study reports on a new solution phase synthesis leading to cobalt and manganese doped ZnO which...
Recent claims that ferromagnetism can be produced in nanoparticles of metal oxides without the prese...
Recent claims that ferromagnetism can be produced in nanoparticles of metal oxides without the prese...
We report the novel result regarding the observation of unusual magnetic behavior with high magnetic...
Complementary to the experimental finding that ZnO nanoparticles become ferromagnetic when coated wi...
We report the intrinsic room-temperature ferromagnetism in undoped ZnO nanoparticles with different ...
We have studied the influence of intrinsic and extrinsic defects in the magnetic and electrical tran...
Extensive calculations based on density functional theory have been carried out to understand the or...
In this work, the structural, chemical and magnetic properties of ZnO:Mn nanorods were investigated....
Since Dietl et al. predicted that Co-doped ZnO may show room-temperature ferromagnetism (RTFM) in 20...