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Cited 342 time in webofscience Cited 350 time in scopus
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Stretchable organic optoelectronic sensorimotor synapse SCIE SCOPUS

Title
Stretchable organic optoelectronic sensorimotor synapse
Authors
YEONGJUN, LEEOh, Jin YoungXu, WentaoKim, Taeho RoyKang, JiheongKim, YeonginKIM, ONNURISon, DongheeTok, Jeffery B.-H.PARK, MOON JEONGBao, ZhenanLee, Tae-Woo
Date Issued
2018-11
Publisher
AAAS
Abstract
Emulation of human sensory and motor functions becomes a core technology in bioinspired electronics for next-generation electronic prosthetics and neurologically inspired robotics. An electronic synapse functionalized with an artificial sensory receptor and an artificial motor unit can be a fundamental element of bioinspired soft electronics. Here, we report an organic optoelectronic sensorimotor synapse that uses an organic optoelectronic synapse and a neuromuscular system based on a stretchable organic nanowire synaptic transistor (s-ONWST). The voltage pulses of a self-powered photodetector triggered by optical signals drive the s-ONWST, and resultant informative synaptic outputs are used not only for optical wireless communication of human-machine interfaces but also for light-interactive actuation of an artificial muscle actuator in the same way that a biological muscle fiber contracts. Our organic optoelectronic sensorimotor synapse suggests a promising strategy toward developing bioinspired soft electronics, neurologically inspired robotics, and electronic prostheses.
URI
https://oasis.postech.ac.kr/handle/2014.oak/95474
DOI
10.1126/sciadv.aat7387
ISSN
2375-2548
Article Type
Article
Citation
Science Advances, vol. 4, no. 11, page. eaat7387, 2018-11
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