Please use this identifier to cite or link to this item: http://repositorio.unicamp.br/jspui/handle/REPOSIP/326848
Type: Artigo
Title: A Wearable, Highly Stable, Strain And Bending Sensor Based On High Aspect Ratio Graphite Nanobelts
Author: Alaferdov
A. V.; Savu
R.; Rackauskas
T. A.; Rackauskas
S.; Canesqui
M. A.; de Lara
D. S.; Setti
G. O.; Joanni
E.; de Trindade
G. M.; Lima
U. B.; de Souza
A. S.; Moshkalev
S. A.
Abstract: A simple and scalable method was developed for the fabrication of wearable strain and bending sensors, based on high aspect ratio (length/thickness similar to 10(3)) graphite nanobelt thin films deposited by a modified Langmuir-Blodgett technique onto flexible polymer substrates. The sensing mechanism is based on the changes in contact resistance between individual nanobelts upon substrate deformation. Very high sensor response stability for more than 5000 strain-release cycles and a device power consumption as low as 1 nW were achieved. The device maximum stretchability is limited by the metal electrodes and the polymer substrate; the maximum strain that could be applied to the polymer used in this work was 40%. Bending tests carried out for various radii of curvature demonstrated distinct sensor responses for positive and negative curvatures. The graphite nanobelt thin flexible films were successfully tested for acoustic vibration and heartbeat sensing.
Subject: Graphite Nanobelts
Langmuir-blodgett
Strain Sensor
Wearable Electronics
Editor: IOP Publishing Ltd
Bristol
Rights: fechado
Identifier DOI: 10.1088/0957-4484/27/37/375501
Address: http://iopscience.iop.org/article/10.1088/0957-4484/27/37/375501/meta
Date Issue: 2016
Appears in Collections:Unicamp - Artigos e Outros Documentos

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