Investigation of bandgap energies of a single phase Zn(₁₋ₓ)CuₓO nanoparticles / Suraya Ahmad Kamil … [et al.]

ZnO nanostructures are extensively studied due to their attractive characteristics and behaviour with wide band gap (3.4 eV) and large exciton binding energy (60 meV) Recently, there have been a lot of interests in studying modified ZnO nanostructures. The prospect of magnetically controlled operati...

Full description

Bibliographic Details
Main Authors: Ahmad Kamil, Suraya, Kamarulzaman, Che Norlida, Mahat, Annie Maria, Mustaffa, Nur Amalina
Format: Research Reports
Language:English
Published: Research Management Institute (RMI) 2012
Subjects:
Online Access:http://ir.uitm.edu.my/id/eprint/24844/
http://ir.uitm.edu.my/id/eprint/24844/1/LP_SURAYA%20AHMAD%20KAMIL%20RMI%2012_5.pdf
id uitm-24844
recordtype eprints
spelling uitm-248442019-07-16T04:47:17Z http://ir.uitm.edu.my/id/eprint/24844/ Investigation of bandgap energies of a single phase Zn(₁₋ₓ)CuₓO nanoparticles / Suraya Ahmad Kamil … [et al.] Ahmad Kamil, Suraya Kamarulzaman, Che Norlida Mahat, Annie Maria Mustaffa, Nur Amalina Nanostructures Elementary particle physics ZnO nanostructures are extensively studied due to their attractive characteristics and behaviour with wide band gap (3.4 eV) and large exciton binding energy (60 meV) Recently, there have been a lot of interests in studying modified ZnO nanostructures. The prospect of magnetically controlled operation of semiconductor devices has provoked intensive research to develop transition metal doped wide-band-gap semiconductors,i.e. diluted magnetic semiconductors (DMS) with room temperature ferromagnetism. Among transition metals, Cu is an especially interesting dopant because that Cu-related compounds are not strongly ferromagnetic. Transition metal-doped ZnO offers the potential for realizing room temperature operation of active spintronic devices as well as rich and fascinating fundamental physics… Research Management Institute (RMI) 2012 Research Reports NonPeerReviewed text en http://ir.uitm.edu.my/id/eprint/24844/1/LP_SURAYA%20AHMAD%20KAMIL%20RMI%2012_5.pdf Ahmad Kamil, Suraya and Kamarulzaman, Che Norlida and Mahat, Annie Maria and Mustaffa, Nur Amalina (2012) Investigation of bandgap energies of a single phase Zn(₁₋ₓ)CuₓO nanoparticles / Suraya Ahmad Kamil … [et al.]. [Research Reports] (Unpublished)
repository_type Digital Repository
institution_category Local University
institution Universiti Teknologi MARA
building UiTM Institutional Repository
collection Online Access
language English
topic Nanostructures
Elementary particle physics
spellingShingle Nanostructures
Elementary particle physics
Ahmad Kamil, Suraya
Kamarulzaman, Che Norlida
Mahat, Annie Maria
Mustaffa, Nur Amalina
Investigation of bandgap energies of a single phase Zn(₁₋ₓ)CuₓO nanoparticles / Suraya Ahmad Kamil … [et al.]
description ZnO nanostructures are extensively studied due to their attractive characteristics and behaviour with wide band gap (3.4 eV) and large exciton binding energy (60 meV) Recently, there have been a lot of interests in studying modified ZnO nanostructures. The prospect of magnetically controlled operation of semiconductor devices has provoked intensive research to develop transition metal doped wide-band-gap semiconductors,i.e. diluted magnetic semiconductors (DMS) with room temperature ferromagnetism. Among transition metals, Cu is an especially interesting dopant because that Cu-related compounds are not strongly ferromagnetic. Transition metal-doped ZnO offers the potential for realizing room temperature operation of active spintronic devices as well as rich and fascinating fundamental physics…
format Research Reports
author Ahmad Kamil, Suraya
Kamarulzaman, Che Norlida
Mahat, Annie Maria
Mustaffa, Nur Amalina
author_facet Ahmad Kamil, Suraya
Kamarulzaman, Che Norlida
Mahat, Annie Maria
Mustaffa, Nur Amalina
author_sort Ahmad Kamil, Suraya
title Investigation of bandgap energies of a single phase Zn(₁₋ₓ)CuₓO nanoparticles / Suraya Ahmad Kamil … [et al.]
title_short Investigation of bandgap energies of a single phase Zn(₁₋ₓ)CuₓO nanoparticles / Suraya Ahmad Kamil … [et al.]
title_full Investigation of bandgap energies of a single phase Zn(₁₋ₓ)CuₓO nanoparticles / Suraya Ahmad Kamil … [et al.]
title_fullStr Investigation of bandgap energies of a single phase Zn(₁₋ₓ)CuₓO nanoparticles / Suraya Ahmad Kamil … [et al.]
title_full_unstemmed Investigation of bandgap energies of a single phase Zn(₁₋ₓ)CuₓO nanoparticles / Suraya Ahmad Kamil … [et al.]
title_sort investigation of bandgap energies of a single phase zn(₁₋ₓ)cuₓo nanoparticles / suraya ahmad kamil … [et al.]
publisher Research Management Institute (RMI)
publishDate 2012
url http://ir.uitm.edu.my/id/eprint/24844/
http://ir.uitm.edu.my/id/eprint/24844/1/LP_SURAYA%20AHMAD%20KAMIL%20RMI%2012_5.pdf
first_indexed 2023-09-18T23:13:29Z
last_indexed 2023-09-18T23:13:29Z
_version_ 1777418957670580224