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심교승

Sim, Kyoseung
Organic Soft Electronics and System Lab.
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Fully rubbery synaptic transistors made out of all-organic materials for elastic neurological electronic skin

Author(s)
Shim, HyunseokJang, SeonminJang, Jae GyuRao, ZhoulyuHong, Jong-InSim, KyoseungYu, Cunjiang
Issued Date
2022-02
DOI
10.1007/s12274-021-3602-x
URI
https://scholarworks.unist.ac.kr/handle/201301/53532
Fulltext
https://link.springer.com/article/10.1007%2Fs12274-021-3602-x
Citation
NANO RESEARCH, v.15, pp.758 - 764
Abstract
Neurologic function implemented soft organic electronic skin holds promise for wide range of applications, such as skin prosthetics, neurorobot, bioelectronics, human-robotic interaction (HRI), etc. Here, we report the development of a fully rubbery synaptic transistor which consists of all-organic materials, which shows unique synaptic characteristics existing in biological synapses. These synaptic characteristics retained even under mechanical stretch by 30%. We further developed a neurological electronic skin in a fully rubbery format based on two mechanoreceptors (for synaptic potentiation or depression) of pressure-sensitive rubber and an all-organic synaptic transistor. By converting tactile signals into Morse Code, potentiation and depression of excitatory postsynaptic current (EPSC) signals allow the neurological electronic skin on a human forearm to communicate with a robotic hand. The collective studies on the materials, devices, and their characteristics revealed the fundamental aspects and applicability of the all-organic synaptic transistor and the neurological electronic skin.
Publisher
TSINGHUA UNIV PRESS
ISSN
1998-0124
Keyword (Author)
synaptic transistorstretchableelectronic skinall-organic

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