2001Unpublished venueRequires access

Magnetic Properties and Colossal Magnetoresistance of La(Sr)MnO_3 Materials Doped with Fe

Li Bao

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Abstract

La 0.7 Sr 0.3 Fe x Mn 1- x O 3 compounds (0 05≤ x ≤0 18) were prepared by the sol gel technique. The effect of Fe doping on the magnetic properties, conductivity and magnetoresistance for La 0.7 Sr 0.3 MnO 3 was investigated. Experimental results indicate that the Fe doping leads to a decrease in the ferromagnetic ordering temperature, an increase in the resistance and magnetoresistance effect. For samples of x =0 05 and x =0 08, two peaks are observed in their ρ T curve. MR of La 0.7 Sr 0.3 Fe 0.08 Mn 0.92 O 3 sample is 18% (8×10 5 A·m -1 , 293 K). At x ≥0 1, metal insulator (M I) transition temperature ( T p) is lower than ferromagnetic Curie temperature ( T C) by about 50~80 K.

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La 0.7 Sr 0.3 Fe x Mn 1- x O 3 compounds (0 05≤ x ≤0 18) were prepared by the sol gel technique. The effect of Fe doping on the magnetic properties, conductivity and magnetoresistance for La 0.7 Sr 0.3 MnO 3 was investigated. Experimental results indicate that the Fe doping leads to a decrease in the ferromagnetic ordering temperature, an increase in the resistance and magnetoresistance effect. For samples of x =0 05 and x =0 08, two peaks are observed in their ρ T curve. MR of La 0.7 Sr 0.3 Fe 0.08 Mn 0.92 O 3 sample is 18% (8×10 5 A·m -1 , 293 K). At x ≥0 1, metal insulator (M I) transition temperature ( T p) is lower than ferromagnetic Curie temperature ( T C) by about 50~80 K.

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Available abstract

La 0.7 Sr 0.3 Fe x Mn 1- x O 3 compounds (0 05≤ x ≤0 18) were prepared by the sol gel technique. The effect of Fe doping on the magnetic properties, conductivity and magnetoresistance for La 0.7 Sr 0.3 MnO 3 was investigated. Experimental results indicate that the Fe doping leads to a decrease in the ferromagnetic ordering temperature, an increase in the resistance and magnetoresistance effect. For samples of x =0 05 and x =0 08, two peaks are observed in their ρ T curve. MR of La 0.7 Sr 0.3 Fe 0.08 Mn 0.92 O 3 sample is 18% (8×10 5 A·m -1 , 293 K). At x ≥0 1, metal insulator (M I) transition temperature ( T p) is lower than ferromagnetic Curie temperature ( T C) by about 50~80 K.

Key concepts: Magnetoresistance, Curie temperature, Colossal magnetoresistance, Materials science, Ferromagnetism, Doping, Electrical resistivity and conductivity, Analytical Chemistry (journal)

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