Size mismatch, grain boundary and bandwidth effects on structural, magnetic and electrical properties of Pr0.67Ba0.33MnO3 and Pr0.67Sr0.33MnO3 perovskites

被引:93
作者
Hcini, S. [1 ]
Zemni, S. [1 ]
Triki, A. [2 ]
Rahmouni, H. [3 ]
Boudard, M. [4 ]
机构
[1] Fac Sci Monastir, Dept Phys, Lab Physicochim Mat, Monastir 5019, Tunisia
[2] Fac Sci Sfax, Lab Mat Composites Ceram & Polymeres, Sfax 3018, Tunisia
[3] Fac Sci Gabes, Dept Phys, Lab Phys Mat & Nanomat Appl Environm, Gabes 6079, Tunisia
[4] CNRS, UMR 5628, Mat & Genie Phys Lab, F-38016 Grenoble 1, France
关键词
Manganites; Rietveld refinement; Grain boundary effect; Electron-(magnon phonon) scattering; Variable range hopping (VRH); Small polaron hopping (SPH); MAGNETORESISTANCE; LA0.67CA0.33MNO3; MAGNETOTRANSPORT; TEMPERATURE; TRANSPORT; CHARGE; SPIN;
D O I
10.1016/j.jallcom.2010.10.190
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We have studied the effect of size mismatch on the structural, magnetic and electrical properties of Pr0.67Ba0.33MnO3 (PBMO) and Pr0.67Sr0.33MnO3 (PSMO) perovskites with considerable difference in their variance sigma(2) values. Samples were prepared by ceramic route at 1200 degrees C. Morphological study, microstructure and chemical composition were examined by scanning electron microscopy, EDX analyses and Rietveld structure refinement. Both compounds exhibit single orthorhombic Pnma crystalline phase and with strongly connected and larger grains for PSMO than for PBMO that gives a beginning of single crystal growth in PSMO case. PBMO with higher variance exhibits distinct intrinsic (due to grains) and extrinsic (due to grain boundaries) transitions in the resistivity behaviour, and with higher transition temperatures than those usually reported in the literature. Extrinsic effects, however, are not observed in the lower sigma(2) PSMO sample. Both compounds exhibit Curie temperature (T-c) values significantly higher than those reported in the literature, and with higher T-c for PSMO due to its larger bandwidth W. The experimental paramagnetic effective moment for PSMO is very close to the theoretical one, whereas there is a significant difference between these moments for PBMO sample, probably due to the considerable size mismatch effect between Pr and Ba, and to the ferromagnetic correlations in the paramagnetic state. Ferromagnetic-metallic regime in the two compounds seems to emanate from the electron-(phonon, magnon) scattering processes with a larger effect for PBMO than that for PSMO, due to the prominent role of the grain boundary in PBMO. Above paramagnetic-insulating transition temperature the data were well fitted by both variable range hopping (VRH) and small polaron hopping (SPH) models giving higher density state, and lower activation energy and Mott temperature T-0 for PSMO than those for PBMO, essentially due to their considerable difference in their variance values. (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:1394 / 1400
页数:7
相关论文
共 35 条
[1]  
[Anonymous], 1990, Metal-Insulator Transitions
[2]   Magnetic and transport properties of nanocrystalline Nd0.5Sr0.5MnO3 [J].
Biswas, Anis ;
Das, I. .
JOURNAL OF APPLIED PHYSICS, 2007, 102 (06)
[3]  
Boujelben W, 2000, PHYS STATUS SOLIDI A, V177, P503, DOI 10.1002/(SICI)1521-396X(200002)177:2<503::AID-PSSA503>3.0.CO
[4]  
2-6
[5]   MAGNETIC PROPERTIES OF MN3O4 AND THE CANTED SPIN PROBLEM [J].
DWIGHT, K ;
MENYUK, N .
PHYSICAL REVIEW, 1960, 119 (05) :1470-1479
[6]   STUDIES OF SMALL-POLARON MOTION .4. ADIABATIC THEORY OF HALL EFFECT [J].
EMIN, D ;
HOLSTEIN, T .
ANNALS OF PHYSICS, 1969, 53 (03) :439-&
[7]   Study of Sb substitution for Pr in the Pr0.67Ba0.33MnO3 system [J].
Garg, K. B. ;
Nordblad, P. ;
Heinonen, M. ;
Panwar, N. ;
Sen, V. ;
Bondino, F. ;
Magnano, E. ;
Carleschi, E. ;
Parmigiani, F. ;
Agarwal, S. K. .
JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2009, 321 (04) :305-311
[8]  
Goldschmit V.M., 1927, GEOCHEMISCHE VERTEIL, V7, P8
[9]  
GUINIER A, 1964, THEORIE TECHNIQUE RA, P482
[10]   Enhanced room-temperature magnetoresistance in La0.7Sr0.3MnO3-glass composites [J].
Gupta, S ;
Ranjit, R ;
Mitra, C ;
Raychaudhuri, P ;
Pinto, R .
APPLIED PHYSICS LETTERS, 2001, 78 (03) :362-364