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In article number 1800288, Ye Zhou, Su‐Ting Han, Vellaisamy A. L. Roy, and co‐workers develop a biological spiking synaptic device with important synaptic behaviors constructed from solution processed bimetal core‐shell nanoparticle based composites. This work demonstrates that the polymer–metal nanoparticle composites based artificial synaptic devices have great potential for the realization of a...
Inspired by the highly parallel processing power and low energy consumption of the biological nervous system, the development of a neuromorphic computing paradigm to mimic brain‐like behaviors with electronic components based artificial synapses may play key roles to eliminate the von Neumann bottleneck. Random resistive access memory (RRAM) is suitable for artificial synapse due to its tunable bidirectional...
Following the trend of miniaturization as per Moore's law, and facing the strong demand of next‐generation electronic devices that should be highly portable, wearable, transplantable, and lightweight, growing endeavors have been made to develop novel flexible data storage devices possessing nonvolatile ability, high‐density storage, high‐switching speed, and reliable endurance properties. Nonvolatile...
In article number 1703126, Su‐Ting Han, Vellaisamy A. L. Roy, Ye Zhou, and co‐workers summarize the recent developments in flexible organic non‐volatile data storage devices from transistor based memory to resistive memory. Growing endeavors have been made to achieve high‐density storage, high‐switching speed and reliable endurance properties. The fantastic nonvolatile memory applications will set...
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