Magnetic and transport thermal measurements of nanosize manganite are reported. The nanoparticles are synthesized with use of the co-precipitation method at different (800, 900, and ) temperatures. Their crystal structure is determined to be perovskite-like with a rhombohedral distortion (the space group ). The phase composition and specific surface nanopowders are determined. The average size of synthesized nanoparticles (from ) is estimated by both the method of low-temperature adsorption of argon and x-ray diffraction measurements. All the nanosize samples show ferromagnetic-like ordering with close phase transition temperatures. Their magnetization decreases with decreasing particle size. Comparison of experimental and calculated temperature dependences of the spontaneous magnetic moment shows that the spontaneous magnetization both in magnetic field and without field is well described in the framework of the double exchange model. The decrease of the magnetization with decreasing particle size is due to the increasing surface contribution to the magnetization. The magnetic entropy is shown to increase with increasing applied magnetic field and to be smaller for the small particles. The resistivity is found to become higher with decreasing particles size at any temperatures.
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July 2009
Research Article|
July 01 2009
Nanoparticle size effect on the magnetic and transport properties of manganites Available to Purchase
V. Dyakonov;
V. Dyakonov
a)
Institute of Physics of the Polish Academy of Sciences
, 32/46 Al. Lotników, 02-668 Warsaw, Poland; A. A. Galkin Donetsk Physico-Technical Institute NANU
, 72 R. Luxembourg St., Donetsk 83114, Ukraine
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A. Ślawska-Waniewska;
A. Ślawska-Waniewska
Institute of Physics of the Polish Academy of Sciences
, 32/46 Al. Lotników, 02-668 Warsaw, Poland
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J. Kazmierczak;
J. Kazmierczak
Institute of Physics of the Polish Academy of Sciences
, 32/46 Al. Lotników, 02-668 Warsaw, Poland
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K. Piotrowski;
K. Piotrowski
Institute of Physics of the Polish Academy of Sciences
, 32/46 Al. Lotników, 02-668 Warsaw, Poland
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O. Iesenchuk;
O. Iesenchuk
Institute of Physics of the Polish Academy of Sciences
, 32/46 Al. Lotników, 02-668 Warsaw, Poland
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H. Szymczak;
H. Szymczak
Institute of Physics of the Polish Academy of Sciences
, 32/46 Al. Lotników, 02-668 Warsaw, Poland
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E. Zubov;
E. Zubov
A. A. Galkin Donetsk Physico-Technical Institute NANU
, 72 R. Luxembourg St., Donetsk 83114, Ukraine
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S. Myronova;
S. Myronova
A. A. Galkin Donetsk Physico-Technical Institute NANU
, 72 R. Luxembourg St., Donetsk 83114, Ukraine
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V. Pashchenko;
V. Pashchenko
A. A. Galkin Donetsk Physico-Technical Institute NANU
, 72 R. Luxembourg St., Donetsk 83114, Ukraine
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A. Pashchenko;
A. Pashchenko
A. A. Galkin Donetsk Physico-Technical Institute NANU
, 72 R. Luxembourg St., Donetsk 83114, Ukraine
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A. Shemjakov;
A. Shemjakov
A. A. Galkin Donetsk Physico-Technical Institute NANU
, 72 R. Luxembourg St., Donetsk 83114, Ukraine
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V. Varyukhin;
V. Varyukhin
A. A. Galkin Donetsk Physico-Technical Institute NANU
, 72 R. Luxembourg St., Donetsk 83114, Ukraine
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S. Prilipko;
S. Prilipko
A. A. Galkin Donetsk Physico-Technical Institute NANU
, 72 R. Luxembourg St., Donetsk 83114, Ukraine
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V. Mikhaylov;
V. Mikhaylov
A. A. Galkin Donetsk Physico-Technical Institute NANU
, 72 R. Luxembourg St., Donetsk 83114, Ukraine
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Z. Kravchenko;
Z. Kravchenko
A. A. Galkin Donetsk Physico-Technical Institute NANU
, 72 R. Luxembourg St., Donetsk 83114, Ukraine
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A. Szytuła;
A. Szytuła
M. Smoluchowski Institute of Physics,
Jagiellonian University
, Reymonta 4, 30-059 Kraków, Poland
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W. Bazela
W. Bazela
Institute of Physics,
Technical University
, Podchorażych 1, 30-084 Kraków, Poland
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V. Dyakonov
a)
A. Ślawska-Waniewska
J. Kazmierczak
K. Piotrowski
O. Iesenchuk
H. Szymczak
E. Zubov
S. Myronova
V. Pashchenko
A. Pashchenko
A. Shemjakov
V. Varyukhin
S. Prilipko
V. Mikhaylov
Z. Kravchenko
A. Szytuła
W. Bazela
Institute of Physics of the Polish Academy of Sciences
, 32/46 Al. Lotników, 02-668 Warsaw, Poland; A. A. Galkin Donetsk Physico-Technical Institute NANU
, 72 R. Luxembourg St., Donetsk 83114, Ukrainea)
E-mail: [email protected]
Low Temp. Phys. 35, 568–576 (2009)
Citation
V. Dyakonov, A. Ślawska-Waniewska, J. Kazmierczak, K. Piotrowski, O. Iesenchuk, H. Szymczak, E. Zubov, S. Myronova, V. Pashchenko, A. Pashchenko, A. Shemjakov, V. Varyukhin, S. Prilipko, V. Mikhaylov, Z. Kravchenko, A. Szytuła, W. Bazela; Nanoparticle size effect on the magnetic and transport properties of manganites. Low Temp. Phys. 1 July 2009; 35 (7): 568–576. https://doi.org/10.1063/1.3170933
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