Mazzerolles, L.

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  • Mazzerolles, L. (1)
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Particle size effect on Neel temperature in Er2O3 nanopowder synthesized by thermolysis of 2, 4-pentadione complex

Blanuša, Jovan; Antić, Bratislav; Kremenović, Aleksandar S.; Nikolić, Aleksandar S.; Mazzerolles, L.; Mentus, Slavko V.; Spasojević, Vojislav

(2007)

TY  - JOUR
AU  - Blanuša, Jovan
AU  - Antić, Bratislav
AU  - Kremenović, Aleksandar S.
AU  - Nikolić, Aleksandar S.
AU  - Mazzerolles, L.
AU  - Mentus, Slavko V.
AU  - Spasojević, Vojislav
PY  - 2007
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/3321
AB  - New synthesis routine based on thermal decomposition of an erbium complex with acetylacetonato ligand (2, 4-pentadione) was used to prepare nanosized Er2O3 with a particle size of 5 nm and a narrow size distribution. For the sake of comparison, the ultrafine-Er2O3 powder was prepared by precipitation and subsequent sintering. The magnetic susceptibility of nanosized Er2O3 indicates the antiferromagnetic LT - GT paramagnetic transition at 1.8 K or lower, while in ultrafine such as in a bulk counterpart the transition was observed at noticeably higher temperature of similar to 3.4 K. The decrease in Neel temperature, observed in the case of nanosized Er2O3 sample, was attributed to both particle surface and core effects. (c) 2007 Elsevier Ltd. All rights reserved.
T2  - Solid State Communications
T1  - Particle size effect on Neel temperature in Er2O3 nanopowder synthesized by thermolysis of 2, 4-pentadione complex
VL  - 144
IS  - 7-8
SP  - 310
EP  - 314
DO  - 10.1016/j.ssc.2007.09.003
ER  - 
@article{
author = "Blanuša, Jovan and Antić, Bratislav and Kremenović, Aleksandar S. and Nikolić, Aleksandar S. and Mazzerolles, L. and Mentus, Slavko V. and Spasojević, Vojislav",
year = "2007",
abstract = "New synthesis routine based on thermal decomposition of an erbium complex with acetylacetonato ligand (2, 4-pentadione) was used to prepare nanosized Er2O3 with a particle size of 5 nm and a narrow size distribution. For the sake of comparison, the ultrafine-Er2O3 powder was prepared by precipitation and subsequent sintering. The magnetic susceptibility of nanosized Er2O3 indicates the antiferromagnetic LT - GT paramagnetic transition at 1.8 K or lower, while in ultrafine such as in a bulk counterpart the transition was observed at noticeably higher temperature of similar to 3.4 K. The decrease in Neel temperature, observed in the case of nanosized Er2O3 sample, was attributed to both particle surface and core effects. (c) 2007 Elsevier Ltd. All rights reserved.",
journal = "Solid State Communications",
title = "Particle size effect on Neel temperature in Er2O3 nanopowder synthesized by thermolysis of 2, 4-pentadione complex",
volume = "144",
number = "7-8",
pages = "310-314",
doi = "10.1016/j.ssc.2007.09.003"
}
Blanuša, J., Antić, B., Kremenović, A. S., Nikolić, A. S., Mazzerolles, L., Mentus, S. V.,& Spasojević, V.. (2007). Particle size effect on Neel temperature in Er2O3 nanopowder synthesized by thermolysis of 2, 4-pentadione complex. in Solid State Communications, 144(7-8), 310-314.
https://doi.org/10.1016/j.ssc.2007.09.003
Blanuša J, Antić B, Kremenović AS, Nikolić AS, Mazzerolles L, Mentus SV, Spasojević V. Particle size effect on Neel temperature in Er2O3 nanopowder synthesized by thermolysis of 2, 4-pentadione complex. in Solid State Communications. 2007;144(7-8):310-314.
doi:10.1016/j.ssc.2007.09.003 .
Blanuša, Jovan, Antić, Bratislav, Kremenović, Aleksandar S., Nikolić, Aleksandar S., Mazzerolles, L., Mentus, Slavko V., Spasojević, Vojislav, "Particle size effect on Neel temperature in Er2O3 nanopowder synthesized by thermolysis of 2, 4-pentadione complex" in Solid State Communications, 144, no. 7-8 (2007):310-314,
https://doi.org/10.1016/j.ssc.2007.09.003 . .
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