Evidence of Itinerant Ferromagnetism in Transition Metal Doped ZnO Nanostructures

This work is aimed at synthesizing and characterizing transition metals (Mn, Fe and Ni) doped ZnO nanostructures. The samples have been prepared by chemical co-precipitation method. The samples have been divided and one half has been coated SiO2. X-Ray diffraction indicated the formation of single p...

Full description

Saved in:
Bibliographic Details
Main Authors: V. Bandyopadhyay, K. Bhushan, S. Mukherjee
Format: Article
Language:English
Published: Sumy State University 2013-05-01
Series:Журнал нано- та електронної фізики
Subjects:
Online Access:http://jnep.sumdu.edu.ua/download/numbers/2013/2/articles/jnep_2013_V5_02030.pdf
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1849698712985534464
author V. Bandyopadhyay
K. Bhushan
S. Mukherjee
author_facet V. Bandyopadhyay
K. Bhushan
S. Mukherjee
author_sort V. Bandyopadhyay
collection DOAJ
description This work is aimed at synthesizing and characterizing transition metals (Mn, Fe and Ni) doped ZnO nanostructures. The samples have been prepared by chemical co-precipitation method. The samples have been divided and one half has been coated SiO2. X-Ray diffraction indicated the formation of single phase ZnO. Optical and photoluminescence studies have been carried out using UV-Vis spectroscopy and Photoluminescence spectroscopy respectively. Magnetic responses of the samples have been studied using SQUID. The structural studies revealed that sample is having wurzite structure at room temperature. Magnetization results shows the ferromagnetism in 2  Fe doped, 5  Ni doped and 2  Mn doped ZnO.
format Article
id doaj-art-a85214cdb6bb48d685a2813bc1bf1a8a
institution DOAJ
issn 2077-6772
language English
publishDate 2013-05-01
publisher Sumy State University
record_format Article
series Журнал нано- та електронної фізики
spelling doaj-art-a85214cdb6bb48d685a2813bc1bf1a8a2025-08-20T03:18:49ZengSumy State UniversityЖурнал нано- та електронної фізики2077-67722013-05-0152020301Evidence of Itinerant Ferromagnetism in Transition Metal Doped ZnO NanostructuresV. BandyopadhyayK. BhushanS. MukherjeeThis work is aimed at synthesizing and characterizing transition metals (Mn, Fe and Ni) doped ZnO nanostructures. The samples have been prepared by chemical co-precipitation method. The samples have been divided and one half has been coated SiO2. X-Ray diffraction indicated the formation of single phase ZnO. Optical and photoluminescence studies have been carried out using UV-Vis spectroscopy and Photoluminescence spectroscopy respectively. Magnetic responses of the samples have been studied using SQUID. The structural studies revealed that sample is having wurzite structure at room temperature. Magnetization results shows the ferromagnetism in 2  Fe doped, 5  Ni doped and 2  Mn doped ZnO.http://jnep.sumdu.edu.ua/download/numbers/2013/2/articles/jnep_2013_V5_02030.pdfZnODilute magnetic semiconductorsCo-precipitationFerromagnetismSuperconductivit
spellingShingle V. Bandyopadhyay
K. Bhushan
S. Mukherjee
Evidence of Itinerant Ferromagnetism in Transition Metal Doped ZnO Nanostructures
Журнал нано- та електронної фізики
ZnO
Dilute magnetic semiconductors
Co-precipitation
Ferromagnetism
Superconductivit
title Evidence of Itinerant Ferromagnetism in Transition Metal Doped ZnO Nanostructures
title_full Evidence of Itinerant Ferromagnetism in Transition Metal Doped ZnO Nanostructures
title_fullStr Evidence of Itinerant Ferromagnetism in Transition Metal Doped ZnO Nanostructures
title_full_unstemmed Evidence of Itinerant Ferromagnetism in Transition Metal Doped ZnO Nanostructures
title_short Evidence of Itinerant Ferromagnetism in Transition Metal Doped ZnO Nanostructures
title_sort evidence of itinerant ferromagnetism in transition metal doped zno nanostructures
topic ZnO
Dilute magnetic semiconductors
Co-precipitation
Ferromagnetism
Superconductivit
url http://jnep.sumdu.edu.ua/download/numbers/2013/2/articles/jnep_2013_V5_02030.pdf
work_keys_str_mv AT vbandyopadhyay evidenceofitinerantferromagnetismintransitionmetaldopedznonanostructures
AT kbhushan evidenceofitinerantferromagnetismintransitionmetaldopedznonanostructures
AT smukherjee evidenceofitinerantferromagnetismintransitionmetaldopedznonanostructures