Predicted by the theory, ferromagnetism is expected in Co-doped ZnO. Recently, ferromagnetism above room temperature was reported in thin films as well as in bulk samples made of cobalt-doped zinc oxide. In this study, we report the preparation of ZnO doped with 5% of Co Zn1−xCoxO, x = 0.05 by electrodeposition. Sample characterization using X-ray diffraction, highresolution transmission electron microscopy, and X-ray photoelectron spectroscopy shows that the dopant is substitutional. Moreover, the magnetic properties of Co-doped ZnO samples electrodeposited as a function of field and temperature exhibit clearly ferromagnetism with Curie temperature above 400 K
Bulk Zn1?xCoxO samples were synthesized via standard solid-state reaction route with different Co mo...
149 p.In recent years, Dilute Magnetic Semiconductors (DMS) with ZnO as host materials have attracte...
149 p.In recent years, Dilute Magnetic Semiconductors (DMS) with ZnO as host materials have attracte...
We have studied the influence of intrinsic and extrinsic defects in the magnetic and electrical tran...
A series of Co-doped ZnO thin films were prepared under various deposition conditions using the puls...
Ternary Zn1−xCoxO crystalline films with different compositions were grown by electrodeposition. The...
The origin of ferromagnetism in ZnO-based systems was investigated using Co-doped ZnO thin films as ...
he primary aim of this work was to synthesize and develop intrinsic ferromagnetism at or above room ...
Ternary Zn1−xCoxO crystalline films with different compositions were grown by electrodeposition. The...
The origin of ferromagnetism in diluted magnetic semiconductors is still an open question, yielding ...
The room-temperature ferromagnetism (RTFM) of Co-doped zinc oxide are reported in this paper. The Zn...
DoctorSpintronics is the science and technology of manipulating the spin degree of freedom of a sing...
The room-temperature ferromagnetism properties of Co-doped zinc oxide are reported in this paper. Th...
Cobalt-doped ZnO (Zn1-xCoxO) thin films were fabricated by reactive magnetron cosputtering. The proc...
Cobalt-doped ZnO (Zn1-xCoxO) thin films were fabricated by reactive magnetron cosputtering. The proc...
Bulk Zn1?xCoxO samples were synthesized via standard solid-state reaction route with different Co mo...
149 p.In recent years, Dilute Magnetic Semiconductors (DMS) with ZnO as host materials have attracte...
149 p.In recent years, Dilute Magnetic Semiconductors (DMS) with ZnO as host materials have attracte...
We have studied the influence of intrinsic and extrinsic defects in the magnetic and electrical tran...
A series of Co-doped ZnO thin films were prepared under various deposition conditions using the puls...
Ternary Zn1−xCoxO crystalline films with different compositions were grown by electrodeposition. The...
The origin of ferromagnetism in ZnO-based systems was investigated using Co-doped ZnO thin films as ...
he primary aim of this work was to synthesize and develop intrinsic ferromagnetism at or above room ...
Ternary Zn1−xCoxO crystalline films with different compositions were grown by electrodeposition. The...
The origin of ferromagnetism in diluted magnetic semiconductors is still an open question, yielding ...
The room-temperature ferromagnetism (RTFM) of Co-doped zinc oxide are reported in this paper. The Zn...
DoctorSpintronics is the science and technology of manipulating the spin degree of freedom of a sing...
The room-temperature ferromagnetism properties of Co-doped zinc oxide are reported in this paper. Th...
Cobalt-doped ZnO (Zn1-xCoxO) thin films were fabricated by reactive magnetron cosputtering. The proc...
Cobalt-doped ZnO (Zn1-xCoxO) thin films were fabricated by reactive magnetron cosputtering. The proc...
Bulk Zn1?xCoxO samples were synthesized via standard solid-state reaction route with different Co mo...
149 p.In recent years, Dilute Magnetic Semiconductors (DMS) with ZnO as host materials have attracte...
149 p.In recent years, Dilute Magnetic Semiconductors (DMS) with ZnO as host materials have attracte...