Density functional theory calculations were employed to model the electronic structure and the magnetic interactions in copper doped anatase and rutile titanium dioxide in order to shed light on the potential of these systems as magnetic oxides using different density functional schemes. In both polymorphs, copper dopant was found to be most stable in substitutional lattice positions. Ferromagnetism is predicted to be stable well above room temperature with long range interactions prevailing in the anatase phase while the rutile phase exhibits only short range superexchange interaction among nearest-neighbour Cu ions. Additionally, energetic evaluation of dopants in scattered and compact configurations reveals a dopant clustering tendency in anatase TiO2.
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21 June 2013
Article Contents
Research Article|
June 21 2013
Theoretical study on copper's energetics and magnetism in TiO2 polymorphs Available to Purchase
M. Hussein. N. Assadi;
M. Hussein. N. Assadi
a)
1
School of Materials Science and Engineering
, University of New South Wales
, Sydney, NSW 2052, Australia
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Dorian A. H. Hanaor
Dorian A. H. Hanaor
2
Particles and Grains Laboratory
, School of Civil Engineering
, University of Sydney
, NSW 2006, Australia
Search for other works by this author on:
M. Hussein. N. Assadi
1,a)
Dorian A. H. Hanaor
2
1
School of Materials Science and Engineering
, University of New South Wales
, Sydney, NSW 2052, Australia
2
Particles and Grains Laboratory
, School of Civil Engineering
, University of Sydney
, NSW 2006, Australia
a)
Author to whom correspondence should be addressed. Electronic mail: [email protected]. Tel.: +61-2-93855234
J. Appl. Phys. 113, 233913 (2013)
Article history
Received:
April 06 2013
Accepted:
June 05 2013
Citation
M. Hussein. N. Assadi, Dorian A. H. Hanaor; Theoretical study on copper's energetics and magnetism in TiO2 polymorphs. J. Appl. Phys. 21 June 2013; 113 (23): 233913. https://doi.org/10.1063/1.4811539
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