화학공학소재연구정보센터
Journal of Materials Science, Vol.43, No.2, 503-509, 2008
Ac and dc magnetotransport properties of the phase-separated La0.6Y0.1Ca0.3MnO3 manganite
The physical properties of the La0.6Y0.1Ca0.3MnO3 compound have been investigated, focusing on the magnetoresistance phenomenon studied by both dc and ac electrical transport measurements. X-ray diffraction and scanning electron microscopy analysis of ceramic samples prepared by the sol-gel method revealed that specimens are single phase and have average grain size of similar to 0.5 mu m. Magnetization and 4-probe dc electrical resistivity rho(T,H) experiments showed that a ferromagnetic transition at T-C similar to 170 K is closely related to a metal-insulator (MI) transition occurring at essentially the same temperature T-MI. The magnetoresistance effect was found to be more pronounced at low applied fields (H <= 2.5 T) and temperatures close to the MI transition. The ac electrical transport was investigated by impedance spectroscopy Z(f,T,H) under applied magnetic field H up to 1 T. The Z(f,T,H) data exhibited two well-defined relaxation processes that exhibit different behaviors depending on the temperature and applied magnetic field. Pronounced effects were observed close to T (C) and were associated with the coexistence of clusters with different electronic and magnetic properties. In addition, the appreciable decrease of the electrical permittivity epsilon'(T,H) is consistent with changes in the concentration of e(g) mobile holes, a feature much more pronounced close to T (C).