Designing energy-efficient artificial synapses with adaptive and programmable electronic signals is essential to effectively mimic synaptic functions for brain-inspired computing systems. Here, we report all-solid-state three-terminal artificial synapses that exploit proton-doped metal-insulator transition in a correlated oxide NdNiO3 (NNO) channel by proton (H+) injection/extraction in response to gate voltage. Gate voltage reversibly controls the H+ concentration in the NNO channel with facile H+ transport from a H+-containing porous silica electrolyte. Gate-induced H+ intercalation in the NNO gives rise to nonvolatile multilevel analogue states due to H+-induced conductance modulation, accompanied by significant modulation of the out-of-...
Iontronics is a newly emerging interdisciplinary concept that bridges electronics and ionics. It pro...
Memristive devices are attracting a great attention for memory, logic, neural networks, and sensing ...
Artificial synaptic thin film transistors (TFTs) capable of simultaneously manifesting signal transm...
Designing energy-efficient artificial synapses with adaptive and programmable electronic signals is ...
Synapse, a combination of memory and information processing units, is the ultimate goal to emulate f...
DoctorCorrelated transition metal oxides have attracted considerable attention due to a remarkable v...
Designing energy efficient neural networks based on synaptic memristor devices remains a challenge. ...
Ion-conducting materials have received considerable attention for their applications in fuel cells, ...
Brain-inspired neuromorphic computing is a revolutionary technology to create an intelligent and ene...
Neuromorphic devices with paired pulse facilitation emulating that of biological synapses are the ke...
Mixed ionic and electronic conductor hybrid devices have attracted widespread attention in the field...
The idea of building a brain-inspired cognitive system has been around for several decades. Recently...
Ion coupling has provided an additional method to modulate electric properties for solid-state mater...
Indium-tin-oxide synaptic transistors using proton conducting nanogranular phosphorosilicate glass a...
In neuroscience, signal processing, memory and learning function are established in the brain by mod...
Iontronics is a newly emerging interdisciplinary concept that bridges electronics and ionics. It pro...
Memristive devices are attracting a great attention for memory, logic, neural networks, and sensing ...
Artificial synaptic thin film transistors (TFTs) capable of simultaneously manifesting signal transm...
Designing energy-efficient artificial synapses with adaptive and programmable electronic signals is ...
Synapse, a combination of memory and information processing units, is the ultimate goal to emulate f...
DoctorCorrelated transition metal oxides have attracted considerable attention due to a remarkable v...
Designing energy efficient neural networks based on synaptic memristor devices remains a challenge. ...
Ion-conducting materials have received considerable attention for their applications in fuel cells, ...
Brain-inspired neuromorphic computing is a revolutionary technology to create an intelligent and ene...
Neuromorphic devices with paired pulse facilitation emulating that of biological synapses are the ke...
Mixed ionic and electronic conductor hybrid devices have attracted widespread attention in the field...
The idea of building a brain-inspired cognitive system has been around for several decades. Recently...
Ion coupling has provided an additional method to modulate electric properties for solid-state mater...
Indium-tin-oxide synaptic transistors using proton conducting nanogranular phosphorosilicate glass a...
In neuroscience, signal processing, memory and learning function are established in the brain by mod...
Iontronics is a newly emerging interdisciplinary concept that bridges electronics and ionics. It pro...
Memristive devices are attracting a great attention for memory, logic, neural networks, and sensing ...
Artificial synaptic thin film transistors (TFTs) capable of simultaneously manifesting signal transm...