Ion-conducting materials have received considerable attention for their applications in fuel cells, electrochemical devices, and sensors. Here, flexible indium zinc oxide (InZnO) synaptic transistors with multiple presynaptic inputs gated by proton-conducting phosphorosilicate glass-based electrolyte films are fabricated on ultrathin Si membranes. Transient characteristics of the proton gated InZnO synaptic transistors are investigated, indicating stable proton-gating behaviors. Short-term synaptic plasticities are mimicked on the proposed proton-gated synaptic transistors. Furthermore, synaptic integration regulations are mimicked on the proposed synaptic transistor networks. Spiking logic modulations are realized based on the transition b...
Designing energy-efficient artificial synapses with adaptive and programmable electronic signals is ...
With the development of biomimetic engineering, artificial synaptic devices are deemed of paramount ...
Recently, neuromorphic devices have been receiving increasing interest in the field of artificial in...
The idea of building a brain-inspired cognitive system has been around for several decades. Recently...
Mixed ionic and electronic conductor hybrid devices have attracted widespread attention in the field...
Phosphorous-doped nanogranular SiO2 gated laterally coupled indium-zinc-oxide electric-double-layer ...
Neuromorphic devices with paired pulse facilitation emulating that of biological synapses are the ke...
Ion coupling has provided an additional method to modulate electric properties for solid-state mater...
In neuroscience, signal processing, memory and learning function are established in the brain by mod...
Laterally coupled oxide-based synaptic transistors with multiple gates are fabricated on phosphoro-s...
Indium-tin-oxide synaptic transistors using proton conducting nanogranular phosphorosilicate glass a...
Iontronics is a newly emerging interdisciplinary concept that bridges electronics and ionics. It pro...
We report a variety of synaptic behaviors in a thin-film transistor (TFT) with a metal-oxide-semicon...
Artificial synaptic devices are the critical component for large-scale neuromorphic computing, which...
Designing energy-efficient artificial synapses with adaptive and programmable electronic signals is ...
Designing energy-efficient artificial synapses with adaptive and programmable electronic signals is ...
With the development of biomimetic engineering, artificial synaptic devices are deemed of paramount ...
Recently, neuromorphic devices have been receiving increasing interest in the field of artificial in...
The idea of building a brain-inspired cognitive system has been around for several decades. Recently...
Mixed ionic and electronic conductor hybrid devices have attracted widespread attention in the field...
Phosphorous-doped nanogranular SiO2 gated laterally coupled indium-zinc-oxide electric-double-layer ...
Neuromorphic devices with paired pulse facilitation emulating that of biological synapses are the ke...
Ion coupling has provided an additional method to modulate electric properties for solid-state mater...
In neuroscience, signal processing, memory and learning function are established in the brain by mod...
Laterally coupled oxide-based synaptic transistors with multiple gates are fabricated on phosphoro-s...
Indium-tin-oxide synaptic transistors using proton conducting nanogranular phosphorosilicate glass a...
Iontronics is a newly emerging interdisciplinary concept that bridges electronics and ionics. It pro...
We report a variety of synaptic behaviors in a thin-film transistor (TFT) with a metal-oxide-semicon...
Artificial synaptic devices are the critical component for large-scale neuromorphic computing, which...
Designing energy-efficient artificial synapses with adaptive and programmable electronic signals is ...
Designing energy-efficient artificial synapses with adaptive and programmable electronic signals is ...
With the development of biomimetic engineering, artificial synaptic devices are deemed of paramount ...
Recently, neuromorphic devices have been receiving increasing interest in the field of artificial in...