MAGNETIC AND TRANSPORT PROPERTIES OF DOUBLE PEROVSKITES
DOI:
https://doi.org/10.24193/subbchem.2021.3.02Keywords:
perovskites, magnetic behavior, transport properties.Abstract
The magnetic and transport properties of polycrystalline Sr2FeMoO6 perovskites are strongly dependent on their microstructure. A cluster glass type behavior was shown at the grain boundaries. The increase of the sintering time from 4 to 8 hrs in Sr2FeMo1-xWxO6 and Ca1.5La0.5FeMo1-xWxO6 series improves the crystallographic order. As a result there is an increase of both the saturation magnetizations and of spin polarizations.
References
K. I. Kobayashi; T. Kimura; H. Sawada; K. Terakura; Y. Tokura; Nature, 1998, 395, 677
D. Rubi; I. Nogues; J. S. Munoz; J. Fountcuberta; Mat. Sci. Eng. 2006, B126, 279
R. P. Borges; R. M. Thomas; C. Cullinan; J. M. D. Coey; B. Suryanarayanan, L. Ben-Dor; I. Pinsard-Gaudart; A. Recolevschi; J. Phys.: Condens. Matter, 1999, 11, 1445
E. Burzo; Perovskites, Landolt-Börnstein Handbook, Springer Verlag, 1996, vol. 27F1ß
K. Kuepper et all; Phys. Stat. Solidi (a), 2004, 201, 3252
M. Raekers et all; J. Opt. Adv. Mater, 2006, 8, 455
J. M. Greneche; M. Venkatesan; R. Suryanarayanan; J. M. D. Coey; Phys. Rev. 2001, B63, 174403
D. Yang; T. Yang; Q. Sun; Y. Chen; G. L. Lapronti; J. Alloys. Comp. 728, 337 (2017)
J. Navarro; C. Frontera; D. Rubi; N. Mestres; J. Frontcuberta; Mater. Res. Bull., 2003, 38, 1477
K. Kuepper; M. Raekers; C. Taubitz; H. Hesse; M. Neumann; A. T. Young, C. Piamonteze; F. Bondino; K. C. Prince; J. Appl. Phys., 2008, 104, 036103
E. Burzo; I. Balasz; M. Valeanu; I. G. Pop; J. Alloys Comp., 2011, 509, 105
E. Burzo; I. Balasz; S. Constantnescu; I. G. Deac; J. Magn. Magn. Mater., 2007, 316, e741
E. Burzo; I. Balasz; M. Valeanu; D. P. Kozlenko; A. V. Rutkauscas; B. N. Savenko; J. Alloys Comp., 2015, 621, 71
E. Burzo; I. Balasz, Rom.J. Phys., 2017, 62, 601;
E. Burzo; I. Balasz; AIP Conf. Proc., 2016, 1722, 080003
E. Burzo; G. Souca; J. Mater. Sci.: Mater. Electron. 2021, 32, 2200
D. Sanchez; J. A. Alonso; M. Garcia-Hernandez; M. J. Martinez-Lope; J. L. Martinez; A. Mellergard; Phys. Rev., 2000, B65, 104426
J. Tejada; B. Martinez; A. Labarta; E. M. Chudnovsky; Phys. Rev. , 1991, B44, 7698
Y. Tomioka; T. Okuda; Y. Okamoto; R. Kumai; K. I. Kobayashi; Y. Tokura; Phys. Rev. , 2000, B61, 422
G. Suchaneck; N. Kalanda; E. Artiukh; M. Yarmolich; N. A. Sobolev; J. Alloys Comp. 2021, 860, 158526
D. Niebieskikwiat; F. Prado; A. Caniero; R. D. Sanchez; Phys. Rev., 2004, B70, 132412
D. Serrate; J. M. De Teresa; R. A. Algarabel; M. R. Ibarra; J. Galibert; Phys. Rev., 2005, B71, 104409
S. Ray; A. Kumar; S. Magundar; E. V. Sampathkumaran; D. D. Sarosa; J. Phys.: Condens Matter, 13607 (2001)
K. I. Kobayashi; T. Okuda; Y. Tomioka; T. Kimura; Y. Tokura; J. Magn. Magn. Mater., 2000, 218, 17
M. Karppinen; H. Yamauchi; Y. Yasukawa; J. Linden; F. S. Chan; R. S. Liu; J. M. Chen; Chem Mater., 2003, 15, 4118
E. Burzo; D. P. Kozlenko; N. T. Dang; S. E. Kichanov; N. O. Golosova; J. Alloys Comp., 2016, 664, 363
P. Zhao; R. C. Yu; F. Y. Li; Z.H. Liu; M. Z. Jin; C. Q. Jin; J. Appl. Phys., 2002, 92, 1942
D. Morrocchelli; P. Postorino; D. D. Castro; E. Arcangeletti; P. Dore; M. C. Guidi; S. Ray; D. D. Sarma; Phys. Rev., 2007, B76, 172405
E. Burzo; I. Balasz; M. Isobe; Y. Ueda, J. Alloys Comp., 2012, 535, 129
E. Burzo; I. Balasz; I. G. Deac; M. Neumann; Physica, 2008, B403, 1601
DIFRAC plus TOPAS General profile and structure analysis software for powder diffraction data, 2001, Bruker AXS Gmb, Karlsruhe
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2021 Studia Universitatis Babeș-Bolyai Chemia
This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.