Titanium doped yttrium manganite: improvement of microstructural properties and peculiarities of multiferroic properties

被引:0
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作者
Olivera Zemljak
Danijela Luković Golić
Milica Počuča-Nešić
Aleksandra Dapčević
Pavla Šenjug
Damir Pajić
Tina Radošević
Goran Branković
Zorica Branković
机构
[1] University of Belgrade,Department of Physics, Faculty of Science
[2] Center of Excellence for Green Technologies—Institute for Multidisciplinary Research,Department for Nanostructural Materials
[3] University of Belgrade,undefined
[4] Faculty of Technology and Metallurgy,undefined
[5] University of Zagreb,undefined
[6] Jožef Stefan Institute,undefined
关键词
Ti-doped YMnO; Sol-gel processing; Ceramics; Microcracks/micropores; Ferroelectric properties; Magnetic properties;
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摘要
Yttrium manganite, YMnO3, was doped with different concentrations of titanium (x = 0, 0.04, 0.08, 0.10, 0.15, 0.20) in order to improve the microstructural and multiferroic properties. The powders were prepared using sol-gel polymerization complex method from citrate precursors. Depending on the titanium concentration, the hexagonal structure and/or the rhombohedral superstructure are present in the sintered samples. The YMn1–xTixO3+δ (x = 0.10, 0.15, 0.20) ceramic samples showed significantly reduced density of microcracks, and of inter- and intragranular pores, and relative densities greater than 90%. The structural parameters for YMn1–xTixO3+δ (x = 0, 0.10, 0.15) were correlated with the results of magnetic and ferroelectric measurements. The most of titanium-doped samples showed a reduction of the leakage current density in comparison with undoped YMnO3, and their ferroelectric responses were slightly improved. The modifications in structural arrangement resulted in partial suppression of ideal antiferromagnetic ordering visible through decrease of the Néel temperature and Weiss parameter, as well as the appearance of weak ferromagnetism and increase of magnetization (especially, in samples x = 0.08, 0.10, 0.15). These changes in physical quantities most likely originated from incorporation of the uncompensated magnetic moments and possible spin canting induced by enhanced symmetry break of the superexchange bridges.
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页码:807 / 819
页数:12
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