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Manganese‐Doped Zirconia Nanocrystals
Author(s) -
Clavel Guylhaine,
Willinger MarcGeorg,
Zitoun David,
Pinicola
Publication year - 2008
Publication title -
european journal of inorganic chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.667
H-Index - 136
eISSN - 1099-0682
pISSN - 1434-1948
DOI - 10.1002/ejic.200700977
Subject(s) - dopant , chemistry , electron paramagnetic resonance , cubic zirconia , doping , manganese , nanocrystal , nanoparticle , paramagnetism , ferromagnetism , analytical chemistry (journal) , chemical engineering , nanotechnology , ceramic , nuclear magnetic resonance , materials science , organic chemistry , condensed matter physics , physics , optoelectronics , engineering
In recent theoretical work, it was predicted that transition‐metal‐doped zirconia (ZrO 2 ) can be ferromagnetic at room temperature with a dependence on the metal dopant and its oxidation state and concentration.1 For experimental verification of these predictions, manganese‐doped ZrO 2 nanoparticles were synthesized. The synthesis was achieved by the benzyl alcohol route, which led to high‐quality nanocrystals with uniform size and shape. The obtained particles present a homogeneous distribution of the magnetic ion. The crystallographic phase was studied by XRD, electron diffraction, and high‐resolution TEM. The doping efficiency was determined at the macroscopic level by chemical analysis and at the nanoscale level by electron energy loss spectrometry. The local structure of the manganese ions in the ZrO 2 matrix was characterized by electron paramagnetic resonance. Finally, the magnetic properties of the obtained nanocrystals were investigated by susceptibility measurements.(© Wiley‐VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2008)

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