Journal of Applied Physics · 2013 · 44 citations · 4 references
Materials ScienceMagnetismMagnetic PropertiesSpintronicsEngineeringMagnetoresistanceLead-free PerovskitesFerroelectric ApplicationMagnetic MaterialCondensed Matter PhysicsPerovskite MaterialsApplied PhysicsHalf-doped Lacro3 CompoundsChemistryCrystallographyElectrical TransportFunctional MaterialsBand Gap Model
In this work, we present results on the structural, electrical, and magnetic properties of pure and half-doped LaCrO3 compounds. It is observed that including Mn the lattice structure changes from orthorhombic to rhombohedral. The electrical transport in LaCrO3 can be described by a band gap model, whereas in La2CrMnO6, a charge localization occurs and the electrical transport is described by a variable range hopping model. The magnetic measurements show that LaCrO3 is a G-type antiferromagnetic with a Neel temperature at 290 K, and the Mn doping favors the ferromagnetic order and reduces the transition temperature.
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Masatoshi Imada, A. Fujimori, Yoshinori Tokura · Reviews of Modern Physics · 1998 · 7.4K citations
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G.H. Jonker, J. H. van Santen · Physica · 1950 · 1.9K citations
Superconductivity without phonons
P. Monthoux, David Pines, G. G. Lonzarich · Nature · 2007 · 514 citations
Superconducting Material, High-tc Superconductivity, Engineering +10