<div class="csl-bib-body">
<div class="csl-entry">Younas, M., Nadeem, M., Atif, M., & Grössinger, R. (2011). Metal-semiconductor transition in NiFe₂O₄ nanoparticles due to reverse cationic distribution by impedance spectroscopy. <i>Journal of Applied Physics</i>, <i>109</i>(9), 093704. https://doi.org/10.1063/1.3582142</div>
</div>
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dc.identifier.issn
0021-8979
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dc.identifier.uri
http://hdl.handle.net/20.500.12708/162864
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dc.description.abstract
Metal-semiconductor transition in NiFe2O4 nanoparticles due to reverse
cationic distribution by impedance spectroscopy
M. Younas,1 M. Nadeem,1,a) M. Atif,2 and R. Grossinger2
1EMMG, Physics Division, PINSTECH, P.O. Nilore, Islamabad, Pakistan
2Institute of Solid State Physics, Technical University of Vienna, Wiedner Hauptstrasse 8-10,
A-1040 Vienna, Austria
(Received 1 December 2010; accepted 24 March 2011; published online 6 May 2011)
We have investigated the magnetic and electrical response of the sol-gel synthesized NiFe2O4
nanoparticles. Changes in the impedance plane plots with temperature have been discussed and
correlated to the microstructure of the material. Thermally activated hopping carriers between
Fe3þ-Fe2þ and Ni2þ-Ni3þ ions have been determined for a decrease in the resistance of the sample
and a change in the conduction mechanism around 318 K. The mixed spinel structure and broken
exchange bonds due to small size effects are due to the canted spin structure at the surface of the
nanoparticles. The magnetization is found to be influenced by the surface spin canting and
anisotropy. We have established the semiconducting to metallic transition (SMT) temperature to be
around 358 K in terms of localized and delocalized eg electrons along with a transition from less
conductive [Fe3þ-O2 -Fe3þ] and [Ni2þ-O2 -Ni2þ] linkage to more conductive [Fe3þ-Fe2þ] and
[Ni2þ-Ni3þ] linkage at the octahedral B site. A decrease in the dielectric constant with temperature
has been discussed in terms of the depletion of space charge layers due to the repulsion of
delocalized eg electrons from the grain boundary planes. The anomalies in tangent loss and
conductivity data around 358 K are
en
dc.language.iso
en
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dc.publisher
AMER INST PHYSICS
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dc.relation.ispartof
Journal of Applied Physics
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dc.subject
General Physics and Astronomy
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dc.title
Metal-semiconductor transition in NiFe₂O₄ nanoparticles due to reverse cationic distribution by impedance spectroscopy
en
dc.type
Artikel
de
dc.type
Article
en
dc.description.startpage
093704
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dc.type.category
Original Research Article
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tuw.container.volume
109
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tuw.container.issue
9
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tuw.journal.peerreviewed
true
-
tuw.peerreviewed
true
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tuw.researchTopic.id
M8
-
tuw.researchTopic.id
M3
-
tuw.researchTopic.id
M2
-
tuw.researchTopic.name
Structure-Property Relationship
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tuw.researchTopic.name
Metallic Materials
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tuw.researchTopic.name
Materials Characterization
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tuw.researchTopic.value
30
-
tuw.researchTopic.value
30
-
tuw.researchTopic.value
40
-
dcterms.isPartOf.title
Journal of Applied Physics
-
tuw.publication.orgunit
E138-03 - Forschungsbereich Functional and Magnetic Materials
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tuw.publisher.doi
10.1063/1.3582142
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dc.identifier.eissn
1089-7550
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dc.description.numberOfPages
8
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wb.sci
true
-
wb.sciencebranch
Physik, Mechanik, Astronomie
-
wb.sciencebranch.oefos
12
-
wb.facultyfocus
Physik der Materie
de
wb.facultyfocus
Physics of Matter
en
wb.facultyfocus.faculty
E130
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Publications
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Publications
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no Fulltext
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item.languageiso639-1
en
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none
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http://purl.org/coar/resource_type/c_18cf
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http://purl.org/coar/resource_type/c_18cf
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item.openairetype
Artikel
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item.openairetype
Article
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crisitem.author.dept
E138-03 - Forschungsbereich Functional and Magnetic Materials