Nanogenerator-induced synaptic plasticity and metaplasticity of bio-realistic artificial synapses

Authors
Kim, Bo-YunHwang, Hyun-GyuWoo, Jong-UnLee, Woong-HeeLee, Tae-HoKang, Chong-YunNahm, Sahn
Issue Date
2017-05-26
Publisher
NATURE PUBLISHING GROUP
Citation
NPG ASIA MATERIALS, v.9
Abstract
A bio-realistic artificial synapse integrated with a nanogenerator (NG), which can be used in neuromorphic systems, is demonstrated for self-powered biomedical devices in this study. Biocompatible amorphous (Na0.5K0.5)NbO3 (NKN) films are grown on TiN/polyimide substrates to synthesize NKN memristors for use as artificial synapses. Various synaptic functions are realized in NKN memristors, which are driven by a pulse generator and an NG. The synaptic plasticity of the NKN memristor results from the oxygen vacancy movements and the changes in the shape of the oxygen vacancy filaments. As a further step toward developing more bio-realistic artificial synapses, various types of metaplasticity and their mechanisms in the NKN memristors are investigated. Moreover, the metaplasticity of spike-timing-dependent plasticity (a key characteristic of biological synapses) is realized in the NKN memristor with a priming stimulus given by the NKN NG.
Keywords
TIMING-DEPENDENT PLASTICITY; LONG-TERM POTENTIATION; TRIBOELECTRIC NANOGENERATOR; MEMRISTOR; SYSTEMS; ENERGY; MEMORY; DEVICES; PACEMAKER; NEURONS; TIMING-DEPENDENT PLASTICITY; LONG-TERM POTENTIATION; TRIBOELECTRIC NANOGENERATOR; MEMRISTOR; SYSTEMS; ENERGY; MEMORY; DEVICES; PACEMAKER; NEURONS
ISSN
1884-4049
URI
https://pubs.kist.re.kr/handle/201004/122721
DOI
10.1038/am.2017.64
Appears in Collections:
KIST Article > 2017
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