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  4. Human skin based triboelectric nanogenerators for harvesting biomechanical energy and as self-powered active tactile sensor system
 
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Human skin based triboelectric nanogenerators for harvesting biomechanical energy and as self-powered active tactile sensor system

Journal
ACS nano
Journal Volume
7
Journal Issue
10
Pages
9213
Date Issued
2013-10-22
Author(s)
Yang, Ya
Zhang, Hulin
ZONG-HONG LIN  
Zhou, Yu Sheng
Jing, Qingshen
Su, Yuanjie
Yang, Jin
Chen, Jun
Hu, Chenguo
Wang, Zhong Lin
DOI
10.1021/nn403838y
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/629401
URL
https://api.elsevier.com/content/abstract/scopus_id/84887014365
Abstract
We report human skin based triboelectric nanogenerators (TENG) that can either harvest biomechanical energy or be utilized as a self-powered tactile sensor system for touch pad technology. We constructed a TENG utilizing the contact/separation between an area of human skin and a polydimethylsiloxane (PDMS) film with a surface of micropyramid structures, which was attached to an ITO electrode that was grounded across a loading resistor. The fabricated TENG delivers an open-circuit voltage up to -1000 V, a short-circuit current density of 8 mA/m(2), and a power density of 500 mW/m(2) on a load of 100 MΩ, which can be used to directly drive tens of green light-emitting diodes. The working mechanism of the TENG is based on the charge transfer between the ITO electrode and ground via modulating the separation distance between the tribo-charged skin patch and PDMS film. Furthermore, the TENG has been used in designing an independently addressed matrix for tracking the location and pressure of human touch. The fabricated matrix has demonstrated its self-powered and high-resolution tactile sensing capabilities by recording the output voltage signals as a mapping figure, where the detection sensitivity of the pressure is about 0.29 ± 0.02 V/kPa and each pixel can have a size of 3 mm × 3 mm. The TENGs may have potential applications in human-machine interfacing, micro/nano-electromechanical systems, and touch pad technology.
Subjects
triboelectric nanogenerator; human skin; self-powered; tactile sensor; power density; touch pad; GENERATING ELECTRICITY; PORTABLE ELECTRONICS; PRESSURE; WALKING; MATRIX
SDGs

[SDGs]SDG7

Publisher
AMER CHEMICAL SOC
Type
journal article

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