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  • We present the preparation and magnetostructural correlations of binary NdMnO3 oxide prepared by four different procedures. Nano-size particle were prepared by simple precipitation of hydroxides (PH), nitrate-glycine synthesis (NG) and self-combustion high-temperature synthesis (SHS), while sol-gel method (SG) produced particles with size of about 2 μm. The as prepared PH and SG particles exhibit amorphous structure, the orthorhombic crystal structure was observed for NG and SHS particles. As prepared PH, NG and SHS are magnetically ordered, annealing leads to magnetic ordering of SG particles.
  • We present the preparation and magnetostructural correlations of binary NdMnO3 oxide prepared by four different procedures. Nano-size particle were prepared by simple precipitation of hydroxides (PH), nitrate-glycine synthesis (NG) and self-combustion high-temperature synthesis (SHS), while sol-gel method (SG) produced particles with size of about 2 μm. The as prepared PH and SG particles exhibit amorphous structure, the orthorhombic crystal structure was observed for NG and SHS particles. As prepared PH, NG and SHS are magnetically ordered, annealing leads to magnetic ordering of SG particles. (en)
Title
  • Magnetostructural correlations of nano-sized manganites prepared by different ways
  • Magnetostructural correlations of nano-sized manganites prepared by different ways (en)
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  • Magnetostructural correlations of nano-sized manganites prepared by different ways
  • Magnetostructural correlations of nano-sized manganites prepared by different ways (en)
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  • RIV/68378271:_____/14:00439622!RIV15-AV0-68378271
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  • 26944
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  • RIV/68378271:_____/14:00439622
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  • manganite; nano-sized; correlations (en)
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  • [687C9DE3988C]
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  • Košice
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  • Warsaw
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  • Acta Physica Polonica A, vol. 126, 2014, č. 1
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  • Maryško, Miroslav
  • Arnold, Zdeněk
  • Vavra, M.
  • Mihalik, M.
  • Zentková, M.
  • Briančin, J.
  • Lazurová, J.
  • Matik, M.
  • Mihalik, Mat.
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issn
  • 0587-4246
number of pages
http://bibframe.org/vocab/doi
  • 10.12693/APhysPolA.126.304
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  • Polska Akademia Nauk
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