Article ID Journal Published Year Pages File Type
1556013 Journal of Materials Science & Technology 2014 4 Pages PDF
Abstract

An indium–zinc-oxide (IZO) based ionic/electronic hybrid synaptic transistor gated by field-configurable nanogranular SiO2 films was reported. The devices exhibited a high current ON/OFF ratio of above 107, a high electron mobility of ∼14 cm2 V−1 s−1 and a low subthreshold swing of ∼80 mV/decade. The gate bias would modulate the interplay between protons and electrons at the channel/dielectric interface. Due to the dynamic modulation of the transient protons flux within the nanogranular SiO2 films, the channel current would be modified dynamically. Short-term synaptic plasticities, such as short-term potentiation and short-term depression, were mimicked on the proposed IZO synaptic transistor. The results indicate that the synaptic transistor proposed here has potential applications in future neuromorphic devices.

Related Topics
Physical Sciences and Engineering Materials Science Materials Chemistry
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