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A flexible artificial intrinsic-synaptic tactile sensory organ

Yu Rim Lee, Tran Quang Trung, Byeong-Ung Hwang and Nae-Eung Lee ()
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Yu Rim Lee: Sungkyunkwan University
Tran Quang Trung: Sungkyunkwan University
Byeong-Ung Hwang: Sungkyunkwan University
Nae-Eung Lee: Sungkyunkwan University

Nature Communications, 2020, vol. 11, issue 1, 1-11

Abstract: Abstract Imbuing bio-inspired sensory devices with intelligent functions of human sensory organs has been limited by challenges in emulating the preprocessing abilities of sensory organs such as reception, filtering, adaptation, and sensory memory at the device level itself. Merkel cells, which is a part of tactile sensory organs, form synapse-like connections with afferent neuron terminals referred to as Merkel cell-neurite complexes. Here, inspired by structure and intelligent functions of Merkel cell-neurite complexes, we report a flexible, artificial, intrinsic-synaptic tactile sensory organ that mimics synapse-like connections using an organic synaptic transistor with ferroelectric nanocomposite gate dielectric of barium titanate nanoparticles and poly(vinylidene fluoride-trifluoroethylene). Modulation of the post-synaptic current of the device induced by ferroelectric dipole switching due to triboelectric-capacitive coupling under finger touch allowed reception and slow adaptation. Modulation of synaptic weight by varying the nanocomposite composition of gate dielectric layer enabled tuning of filtering and sensory memory functions.

Date: 2020
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DOI: 10.1038/s41467-020-16606-w

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