CMOS-based computing systems that employ the von Neumann architecture are relatively limited when it comes to parallel data storage and processing. In contrast, the human brain is a living computational signal processing unit that operates with extreme parallelism and energy efficiency. Although numerous neuromorphic electronic devices have emerged in the last decade, most of them are rigid or contain materials that are toxic to biological systems. In this work, we report on biocompatible bilayer graphene-based artificial synaptic transistors (BLAST) capable of mimicking synaptic behavior. The BLAST devices leverage a dry ion-selective membrane, enabling long-term potentiation, with ~50 aJ/m^2 switching energy efficiency, at least an order ...
The brain is capable of massively parallel information processing while consuming only similar to 1-...
Organic neuromorphic devices can accelerate neural networks and integrate with biological systems. D...
Neuromorphic cognitive computing offers a bio-inspired means to approach the natural intelligence of...
Design and implementation of artificial neuromorphic systems able to provide brain akin computation ...
Designing and implementing artificial systems that can be interfaced with the human brain or that ca...
Human brain has astonishing advantages such as tolerance to system faults, low power consumption, an...
The human brain is a natural high-performance computing systemwith outstanding properties, e.g., ult...
Artificial intelligence (AI) has the ability of revolutionizing our lives and society in a radical w...
Brain-inspired neuromorphic computing is a revolutionary technology to create an intelligent and ene...
Nonvolatile, flexible artificial synapses that can be used for brain-inspired computing are highly d...
Neuromorphic computing (NC), which emulates neural activities of the human brain, is considered for...
Cortical circuits in the brain have long been recognised for their information processing capabiliti...
Memristors with rich interior dynamics of ion migration are promising for mimicking various biologic...
Brain-inspired neuromorphic computing which consist neurons and synapses, with an ability to perform...
Neuromorphic devices represent an attempt to mimic aspects of the brain's architecture and dynamics ...
The brain is capable of massively parallel information processing while consuming only similar to 1-...
Organic neuromorphic devices can accelerate neural networks and integrate with biological systems. D...
Neuromorphic cognitive computing offers a bio-inspired means to approach the natural intelligence of...
Design and implementation of artificial neuromorphic systems able to provide brain akin computation ...
Designing and implementing artificial systems that can be interfaced with the human brain or that ca...
Human brain has astonishing advantages such as tolerance to system faults, low power consumption, an...
The human brain is a natural high-performance computing systemwith outstanding properties, e.g., ult...
Artificial intelligence (AI) has the ability of revolutionizing our lives and society in a radical w...
Brain-inspired neuromorphic computing is a revolutionary technology to create an intelligent and ene...
Nonvolatile, flexible artificial synapses that can be used for brain-inspired computing are highly d...
Neuromorphic computing (NC), which emulates neural activities of the human brain, is considered for...
Cortical circuits in the brain have long been recognised for their information processing capabiliti...
Memristors with rich interior dynamics of ion migration are promising for mimicking various biologic...
Brain-inspired neuromorphic computing which consist neurons and synapses, with an ability to perform...
Neuromorphic devices represent an attempt to mimic aspects of the brain's architecture and dynamics ...
The brain is capable of massively parallel information processing while consuming only similar to 1-...
Organic neuromorphic devices can accelerate neural networks and integrate with biological systems. D...
Neuromorphic cognitive computing offers a bio-inspired means to approach the natural intelligence of...