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Collapse of charge ordering and enhancement of magnetocaloric effect in nanocrystalline La0.35Pr0.275Ca0.375MnO3
98
Citations
14
References
2010
Year
Magnetic PropertiesEngineeringMagnetic Refrigerant MaterialsMagnetic ResonanceMagnetocaloric EffectNanocrystalline La0.35pr0.275ca0.375mno3Magnetic MaterialsFerrofluidMagnetismChemical EngineeringMagnetic RefrigerationMaterials ScienceNanotechnologyEnergy StorageNanocrystalline MaterialMagnetic MaterialFerromagnetismNanomagnetismMixed Phase ManganitesNanomaterialsNatural SciencesMagnetic PropertyRefrigerant Capacity
We demonstrate the possibility of enhancing both the magnetocaloric effect (MCE) and refrigerant capacity (RC) in nanostructured mixed phase manganites. A comparative study of the magnetic and magnetocaloric properties of La0.35Pr0.275Ca0.375MnO3 in single crystalline and nanocrystalline forms is presented. While the conventional trend is reduction of magnetization and MCE with nanostructuring, we show that the opposite is true in the case of mixed phase manganites. The charge-ordered state is largely suppressed and ferromagnetic order is established in the nanocrystalline sample with an average particle size of 50 nm. Consequently, a strong enhancement of MCE and RC and a strong reduction of thermal and field hysteresis losses are achieved in the nanocrystalline sample. This finding opens up a way of exploring magnetic refrigerant materials at the nanometer scale for active magnetic refrigerators.
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