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Physical Properties of Dilute Magnetic Semiconducting Oxides - Defect induced inrinsic ferromagnetism in powder and thin films of zinc oxide

Anglais · Livre de poche

Expédition généralement dans un délai de 2 à 3 semaines (titre imprimé sur commande)

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Transition metal doped ZnO has been studied from the perspective of its suitability in electronic applications. Bulk samples of Mn doped ZnO has been synthesized by solid state reaction and sol-gel techniques. Thin films of Mn doped ZnO has been synthesized by only sol-gel spin coating technique. So far as Co doped ZnO is concerned it is basically Co co-doped AZO [Al doped ZnO] film synthesized by sol-gel dip coating technique. Above 3 at% of Mn doping impurity phase has been developed for bulk powder sample. The impurity phase was completely or partially dissolved by ion beam irradiation. The role of Zn vacancy and substitutional replacement of Mn at Zn site is crucial for intrinsic ferromagnetism. Further counterbalancing antiferromagnetism and paramagnetism are also present. 2 at% Mn doped ZnO powder sample indicate metal insulator transition. Mn doped ZnO films exhibit defect induced ferromagnetism and interpreted in terms of bound magnetic polaron. Zn Vacancy favours and oxygen vacancy opposes intrinsic ferromagnetism in Mn doped ZnO film. Highly conducting Co co-doped AZO films shows potential for applications with interesting low temperature resistivity behaviour.

A propos de l'auteur










Dr. Swarup Kumar Neogi, Dr. Aritra Banerjee and Dr. Sudipta Bandyopadhyay are Researchers working in Experimental Physics (Materials Science) in the fields of Spintronic and Thermoelectric Materials from India. They have all exceptionally good research carrier with many publications in reputed international journals, and Books.

Détails du produit

Auteurs Sudipt Bandyopadhyay, Sudipta Bandyopadhyay, Banerje, Aritra Banerjee, Swarup Kuma Neogi, Swarup Kumar Neogi
Edition LAP Lambert Academic Publishing
 
Langues Anglais
Format d'édition Livre de poche
Sortie 01.01.2014
 
EAN 9783659638565
ISBN 978-3-659-63856-5
Pages 232
Catégorie Sciences naturelles, médecine, informatique, technique > Physique, astronomie > Electricité, magnétisme, optique

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