Japanese Journal of Applied Physics · 2012 · 16 citations · 36 references
Non-volatile MemoryElectroformation PolarityEngineeringEmerging Memory TechnologyOptoelectronic DevicesLow Voltage OperationPhase Change MemoryOxygen Vacancy FilamentsElectronic DevicesMemory ParametersMaterials ScienceElectrical EngineeringElectronic MemoryMicroelectronicsElectrical PropertySpecific ResistanceElectronic MaterialsApplied PhysicsSemiconductor Memory
A route to improve the uniformity of key resistive switching memory parameters such as SET/RESET voltages, low/high-resistance states as well as switching cycles is demonstrated in an IrO x /TaO x /WO x /W simple resistive memory stack by selecting the electroformation polarity. The various stack layers are confirmed by high-resolution transmission electron microscopy, energy dispersive X-ray spectroscopy, and X-ray photoelectron spectroscopy analyses. Cumulative probability plots of the key memory parameters show tight distribution. The oxygen vacancy filaments are formed/ruptured owing to polarity-dependent oxygen ion migration, which is the switching mechanism in the TaO x /WO x bilayers, and improved resistive switching parameters under positive formation polarity are observed. The fabricated device has shown good potential for multilevel capability with a low voltage operation of ±3 V. The device has shown an excellent read endurance of >10 5 cycles and data retention up to 10 years at 85 °C.
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Nanoionics-based resistive switching memories
Rainer Waser, Masakazu Aono · Nature Materials · 2007 · 4.7K citations
Resistive switching in transition metal oxides
Akihito Sawa · Materials Today · 2008 · 2.9K citations · Full text
Materials Science, Non-volatile Memory, Electrical Engineering +15
High switching endurance in TaOx memristive devices
J. Joshua Yang, M.-X. Zhang, John Paul Strachan et al. · Applied Physics Letters · 2010 · 625 citations · Full text