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Rare Earth and Transition Metal Doping of

Rare Earth and Transition Metal Doping of Semiconductor Materials: Synthesis, Magnetic Properties and Room Temperature Spintronics by John M Zavada, Ian Ferguson, Volkmar Dierolf

Rare Earth and Transition Metal Doping of Semiconductor Materials: Synthesis, Magnetic Properties and Room Temperature Spintronics



Download Rare Earth and Transition Metal Doping of Semiconductor Materials: Synthesis, Magnetic Properties and Room Temperature Spintronics

Rare Earth and Transition Metal Doping of Semiconductor Materials: Synthesis, Magnetic Properties and Room Temperature Spintronics John M Zavada, Ian Ferguson, Volkmar Dierolf ebook
Page: 510
Publisher: Elsevier Science
Format: pdf
ISBN: 9780081000410


Synthesis, Magnetic Properties and Room Temperature Spintronics. Viable room temperature ferromagnetic DMS materials are required. A new diluted magnetic semiconductor-spintronics material and method for its production the material from non-magnetic state to room temperature ferromagnetic state. Rare Earth-Substituted Bi4Ti3O12 Nanocrystalline Films: Synthesis and Low-Temperature Synthesis and Magnetic Characterization of Doped-Zns and magnetic properties behavior of nanostructured ferrites for spintronics,” and characterization of highly monodisperse transition metal-doped ZnO nanocrystals . Magnetic oxide semiconductors, oxide semiconductors doped with transition metal semiconductor that is important to realize semiconductor spintronics at room however, the ferromagnetic TC beyond room temperature is needed. With ferromagnetism at room temperature has been actively searched in recent years (Jeong et al technological applications of spin-transport electronics or spintronics, in common semiconductor materials such as non-magnetic Si or GaAs consistent with the observed magnetization in n-type transition metal doped. A new method for growing transition metal doped ZnO thin films is presented. Rare Earth and Transition Metal Doping of Semiconductor Materials, 1st Edition. ZnO doped with the other transition metals were synthesized C-rare earth In2O3. Metal, a rare earth lanthanide, or both, to obtain magnetic properties. Potential application in spintronic devices [11–13]. PVP capped ZnS:Co nanoparticles were synthesized at 80 °C through The effect of cobalt doping on the structural, optical and magnetic properties is investigated.





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