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Multifunctionality attributed to the self-doping in polycrystalline La0.9MnO3: Coexistence of large magnetoresistance and magnetocaloric effect
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Citations
17
References
2009
Year
Magnetic PropertiesEngineeringMagnetic EntropyMagnetocaloric EffectMagnetic MaterialsMagnetoresistanceMagnetismMultiferroicsFerroelectric ApplicationMaterials ScienceOxide ElectronicsMagnetic MaterialRoom TemperatureFerromagnetismLarge MagnetoresistanceNatural SciencesPolycrystalline La0.9mno3Applied PhysicsCondensed Matter PhysicsFunctional Materials
We report the multifunctionality near room temperature attributed to the self-doping in polycrystalline La0.9MnO3. The peak in the temperature dependence of magnetoresistance (MR) and change of magnetic entropy (ΔSM) are observed at 254 K with −MR=55% at 50 kOe and −SM=4.9 J/kg K at 20 kOe where the Curie temperature and metal-insulator transition coexist at 254 K associated with a first order transition. The correlation between resistivity and ΔSM is observed in a limited region around TC. Here ΔSM is close to the largest reported values in manganites, suggesting that the material is interesting for multiple applications.
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