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Emerging Memristive Artificial Synapses and Neurons for Energy‐Efficient  Neuromorphic Computing - Choi - 2020 - Advanced Materials - Wiley Online  Library
Emerging Memristive Artificial Synapses and Neurons for Energy‐Efficient Neuromorphic Computing - Choi - 2020 - Advanced Materials - Wiley Online Library

Research Team Develops Neuromorphic Hardware Using Perovskite Nickelate -  Electronics For You
Research Team Develops Neuromorphic Hardware Using Perovskite Nickelate - Electronics For You

A synaptic device built in one diode–one resistor (1D–1R) architecture with  intrinsic SiOx-based resistive switching memory | Semantic Scholar
A synaptic device built in one diode–one resistor (1D–1R) architecture with intrinsic SiOx-based resistive switching memory | Semantic Scholar

Synaptic Behavior in Metal Oxide-Based Memristors | IntechOpen
Synaptic Behavior in Metal Oxide-Based Memristors | IntechOpen

Spiking neurons with spatiotemporal dynamics and gain modulation for  monolithically integrated memristive neural networks | Nature Communications
Spiking neurons with spatiotemporal dynamics and gain modulation for monolithically integrated memristive neural networks | Nature Communications

Power-Efficient Gas-Sensing and Synaptic Diodes Based on Lateral  Pentacene/a-IGZO PN Junctions | ACS Applied Materials & Interfaces
Power-Efficient Gas-Sensing and Synaptic Diodes Based on Lateral Pentacene/a-IGZO PN Junctions | ACS Applied Materials & Interfaces

Characteristic analysis of volatile avalanche diode threshold switching for  bionic nerve synapse applications | Scientific Reports
Characteristic analysis of volatile avalanche diode threshold switching for bionic nerve synapse applications | Scientific Reports

Demonstration of Synaptic Behaviors and Resistive Switching  Characterizations by Proton Exchange Reactions in Silicon Oxide |  Scientific Reports
Demonstration of Synaptic Behaviors and Resistive Switching Characterizations by Proton Exchange Reactions in Silicon Oxide | Scientific Reports

Neuromorphic Engineering: From Biological to Spike‐Based Hardware Nervous  Systems - Yang - 2020 - Advanced Materials - Wiley Online Library
Neuromorphic Engineering: From Biological to Spike‐Based Hardware Nervous Systems - Yang - 2020 - Advanced Materials - Wiley Online Library

Frontiers | A 2-transistor/1-resistor artificial synapse capable of  communication and stochastic learning in neuromorphic systems
Frontiers | A 2-transistor/1-resistor artificial synapse capable of communication and stochastic learning in neuromorphic systems

Flexible three-dimensional artificial synapse networks with correlated  learning and trainable memory capability | Nature Communications
Flexible three-dimensional artificial synapse networks with correlated learning and trainable memory capability | Nature Communications

Nanomaterials | Free Full-Text | Ion-Movement-Based Synaptic Device for  Brain-Inspired Computing | HTML
Nanomaterials | Free Full-Text | Ion-Movement-Based Synaptic Device for Brain-Inspired Computing | HTML

Stretchable elastic synaptic transistors for neurologically integrated soft  engineering systems | Science Advances
Stretchable elastic synaptic transistors for neurologically integrated soft engineering systems | Science Advances

Rectifying electrical synapses and coincidence detection in a model... |  Download Scientific Diagram
Rectifying electrical synapses and coincidence detection in a model... | Download Scientific Diagram

arXiv:2006.01981v2 [cs.NE] 9 Jun 2020
arXiv:2006.01981v2 [cs.NE] 9 Jun 2020

A synaptic device built in one diode–one resistor (1D–1R) architecture with  intrinsic SiOx-based resistive switching memory | Semantic Scholar
A synaptic device built in one diode–one resistor (1D–1R) architecture with intrinsic SiOx-based resistive switching memory | Semantic Scholar

Synaptic characteristics and switching mechanism of the 1D organic... |  Download Scientific Diagram
Synaptic characteristics and switching mechanism of the 1D organic... | Download Scientific Diagram

Ferroelectric artificial synapse for neuromorphic computing and flexible  applications - ScienceDirect
Ferroelectric artificial synapse for neuromorphic computing and flexible applications - ScienceDirect

Rectifying Electrical Synapses Can Affect the Influence of Synaptic  Modulation on Output Pattern Robustness | Journal of Neuroscience
Rectifying Electrical Synapses Can Affect the Influence of Synaptic Modulation on Output Pattern Robustness | Journal of Neuroscience

Memristive Artificial Synapses for Neuromorphic Computing | SpringerLink
Memristive Artificial Synapses for Neuromorphic Computing | SpringerLink

Wearable µBrain: Fabric Based-Spiking Neural Network
Wearable µBrain: Fabric Based-Spiking Neural Network

Optically excited synapse for neural networks
Optically excited synapse for neural networks

A synaptic device built in one diode–one resistor (1D–1R) architecture with  intrinsic SiOx-based resistive switching memory
A synaptic device built in one diode–one resistor (1D–1R) architecture with intrinsic SiOx-based resistive switching memory

A synaptic device built in one diode–one resistor (1D–1R) architecture with  intrinsic SiOx-based resistive switching memory
A synaptic device built in one diode–one resistor (1D–1R) architecture with intrinsic SiOx-based resistive switching memory