Publication | Closed Access
Exploiting multiple percolation in two-terminal memristor to achieve a multitude of resistive states
14
Citations
63
References
2021
Year
EngineeringResistive StatesBiomedical EngineeringHybrid Conjugated PolymerPhase Change MemoryNeurochipSocial SciencesTwo-terminal MemristorNeuromodulationSynergistic Percolation MechanismsNanoelectronicsMemory DeviceNeuromorphic EngineeringNeuromorphic DevicesBiophysicsNeurocomputersElectrical EngineeringPhysicsMicroelectronicsSpintronicsMultiple PercolationComputational NeuroscienceCondensed Matter PhysicsApplied PhysicsConjugated PolymerNeuroscienceSemiconductor MemoryBrain-like Computing
The emulation of synaptic responses with memristors is an attractive route to neuromorphic networks. A hybrid conjugated polymer with pendant carbazole rings was employed in a two-terminal memristor that exhibited synergistic percolation mechanisms.
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