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Dynamical memristors for higher-complexity neuromorphic computing
Research on electronic devices and materials is currently driven by both the slowing down
of transistor scaling and the exponential growth of computing needs, which make present …
of transistor scaling and the exponential growth of computing needs, which make present …
Resistive switching materials for information processing
The rapid increase in information in the big-data era calls for changes to information-
processing paradigms, which, in turn, demand new circuit-building blocks to overcome the …
processing paradigms, which, in turn, demand new circuit-building blocks to overcome the …
A comprehensive review on emerging artificial neuromorphic devices
The rapid development of information technology has led to urgent requirements for high
efficiency and ultralow power consumption. In the past few decades, neuromorphic …
efficiency and ultralow power consumption. In the past few decades, neuromorphic …
Synaptic devices based neuromorphic computing applications in artificial intelligence
Synaptic devices, including synaptic memristor and synaptic transistor, are emerging
nanoelectronic devices, which are expected to subvert traditional data storage and …
nanoelectronic devices, which are expected to subvert traditional data storage and …
Stimuli‐responsive memristive materials for artificial synapses and neuromorphic computing
Neuromorphic computing holds promise for building next‐generation intelligent systems in a
more energy‐efficient way than the conventional von Neumann computing architecture …
more energy‐efficient way than the conventional von Neumann computing architecture …
Memristive synapses and neurons for bioinspired computing
To realize highly efficient neuromorphic computing that is comparable to biological
counterparts, bioinspired computing systems, consisting of biorealistic artificial synapses …
counterparts, bioinspired computing systems, consisting of biorealistic artificial synapses …
Physical origins of current and temperature controlled negative differential resistances in NbO2
Negative differential resistance behavior in oxide memristors, especially those using NbO2,
is gaining renewed interest because of its potential utility in neuromorphic computing …
is gaining renewed interest because of its potential utility in neuromorphic computing …
On‐demand reconfiguration of nanomaterials: when electronics meets ionics
Rapid advances in the semiconductor industry, driven largely by device scaling, are now
approaching fundamental physical limits and face severe power, performance, and cost …
approaching fundamental physical limits and face severe power, performance, and cost …
Probing memristive switching in nanoionic devices
Y Yang, R Huang - Nature Electronics, 2018 - nature.com
Memristive switching in nanoionic devices involves the interplay between physical,
electrochemical and thermochemical processes, which can occur in the bulk or at interfaces …
electrochemical and thermochemical processes, which can occur in the bulk or at interfaces …
Conduction mechanisms, dynamics and stability in ReRAMs
Though resistive random access memory (ReRAM), a promising emerging memory
technology, has achieved remarkable progress in technology development in recent years …
technology, has achieved remarkable progress in technology development in recent years …