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Improvement of reproducible hysteresis and resistive switching in metal-La0.7Ca0.3MnO3-metal heterostructures by oxygen annealing
62
Citations
18
References
2007
Year
Materials ScienceOxide HeterostructuresMaterials EngineeringRoom TemperatureEngineeringSemiconductor TechnologyReversible ResistanceOxide ElectronicsResistive SwitchingApplied PhysicsReproducible HysteresisMetal-la0.7ca0.3mno3-metal HeterostructuresSemiconductor MaterialMultilayer HeterostructuresSemiconductor Device
Materials showing reversible resistance switching between high-resistance state and low-resistance state at room temperature are attractive for today’s semiconductor technology. In this letter, the improvement of reproducible hysteresis and resistive switching characteristics of metal-La0.7Ca0.3MnO3-metal (M-LCMO-M) heterostructures is demonstrated. The fabrication of the M-LCMO-M heterostructures is compatible with the standard complementary metal-oxide semiconductor process. The effect of oxygen annealing on the improvement of the hysteresis and resistive switching is discussed. The good retention characteristics are exhibited in the M-LCMO-M heterostructures by the accurate controlling of the preparation parameters.
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