Self-Powered Analogue Smart Skin
Author(s) -
Mayue Shi,
Jinxin Zhang,
Haotian Chen,
Mengdi Han,
Smitha Ankanahalli Shankaregowda,
Zongming Su,
Bo Meng,
Xiaoliang Cheng,
Haixia Zhang
Publication year - 2016
Publication title -
acs nano
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.554
H-Index - 382
eISSN - 1936-086X
pISSN - 1936-0851
DOI - 10.1021/acsnano.5b07074
Subject(s) - triboelectric effect , electronic skin , materials science , smart material , contact electrification , robot , electrical engineering , electrostatic induction , computer science , nanotechnology , electrode , engineering , artificial intelligence , composite material , chemistry
The progress of smart skin technology presents unprecedented opportunities for artificial intelligence. Resolution enhancement and energy conservation are critical to improve the perception and standby time of robots. Here, we present a self-powered analogue smart skin for detecting contact location and velocity of the object, based on a single-electrode contact electrification effect and planar electrostatic induction. Using an analogue localizing method, the resolution of this two-dimensional smart skin can be achieved at 1.9 mm with only four terminals, which notably decreases the terminal number of smart skins. The sensitivity of this smart skin is remarkable, which can even perceive the perturbation of a honey bee. Meanwhile, benefiting from the triboelectric mechanism, extra power supply is unnecessary for this smart skin. Therefore, it solves the problems of batteries and connecting wires for smart skins. With microstructured poly(dimethylsiloxane) films and silver nanowire electrodes, it can be covered on the skin with transparency, flexibility, and high sensitivity.
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