Halide perovskites, fascinating memristive materials owing to mixed ionic-electronic conductivity, have been attracting great attention as artificial synapses recently. However, polycrystalline nature in thin film form and instability under ambient air hamper them to be implemented in demonstrating reliable neuromorphic devices. Here, we successfully fabricated vertically aligned 2D halide perovskite films (V-HPs) for active layers of artificial synapses, showing moisture stability for several months. Unlike random-oriented HPs, which exhibit negligible current hysteresis, the V-HPs possess multilevel analog memristive characteristics, programmable potentiation and depression with distinguished multi-states, long-short-term plasticity, pair...
We demonstrate the pulsed voltage tunable multileveled resistive switching (RS) across a promising t...
Many in-memory computing frameworks demand electronic devices with specific switching characteristic...
Memristive synapses based on resistive switching are promising electronic devices that emulate the s...
© 2021 Elsevier LtdHalide perovskites, fascinating memristive materials owing to mixed ionic-electro...
© 2022 American Chemical Society. All rights reserved.In resistive switching memories or artificial ...
Emulation of brain‐like signal processing is the foundation for development of efficient learning ci...
Exploring new materials and structures to construct synaptic devices represents a promising route to...
Organometal halide perovskite synaptic devices are fabricated; they emulate important working princi...
Extremely low energy consumption neuromorphic computing is required to achieve massively parallel in...
: With increasing computing demands, serial processing in von Neumann architectures built with zerot...
Inspired by neural computing, the pursuit of ultralow power neuromorphic architectures with highly d...
Organic and perovskite memristors have superior characteristics both in material and structural pers...
Organometal halide perovskite materials are receiving significant attention for the fabrication of r...
Deployment of novel artificial synapses serves as the crucial unit for building neuromorphic hardwar...
Neuromorphic computing architectures are required to execute several operations such as forgetting a...
We demonstrate the pulsed voltage tunable multileveled resistive switching (RS) across a promising t...
Many in-memory computing frameworks demand electronic devices with specific switching characteristic...
Memristive synapses based on resistive switching are promising electronic devices that emulate the s...
© 2021 Elsevier LtdHalide perovskites, fascinating memristive materials owing to mixed ionic-electro...
© 2022 American Chemical Society. All rights reserved.In resistive switching memories or artificial ...
Emulation of brain‐like signal processing is the foundation for development of efficient learning ci...
Exploring new materials and structures to construct synaptic devices represents a promising route to...
Organometal halide perovskite synaptic devices are fabricated; they emulate important working princi...
Extremely low energy consumption neuromorphic computing is required to achieve massively parallel in...
: With increasing computing demands, serial processing in von Neumann architectures built with zerot...
Inspired by neural computing, the pursuit of ultralow power neuromorphic architectures with highly d...
Organic and perovskite memristors have superior characteristics both in material and structural pers...
Organometal halide perovskite materials are receiving significant attention for the fabrication of r...
Deployment of novel artificial synapses serves as the crucial unit for building neuromorphic hardwar...
Neuromorphic computing architectures are required to execute several operations such as forgetting a...
We demonstrate the pulsed voltage tunable multileveled resistive switching (RS) across a promising t...
Many in-memory computing frameworks demand electronic devices with specific switching characteristic...
Memristive synapses based on resistive switching are promising electronic devices that emulate the s...