DESIGNING ULTRASENSITIVE AND STRECHABLE STRAIN SENSORS BY TAILORED FRAGMENTATION OF CARBON-BASED CONDUCTORS

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Main Authors: G. Lubineau, Y. Xin, X. Xu, J. Zhou
Format: Recurso digital
Published: Zenodo 2017
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author G. Lubineau
Y. Xin
X. Xu
J. Zhou
author_facet G. Lubineau
Y. Xin
X. Xu
J. Zhou
contents Stretchable sensors are needed for emerging applications such like wearable electronics, artifical e-skins. They shoudl show good perfromance in�sensitivity, stretchability and linearity.�Our strategy here is to develop a new family of sensors taking advantage of the special properties of�fragmented carbon-nanoparticles based geometries.�Our concept could readily be extended to�other conductive nano materials, paving the way for developing high-performance strain sensors.
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_15432284
institution Zenodo
language
publishDate 2017
publisher Zenodo
record_format zenodo
spellingShingle DESIGNING ULTRASENSITIVE AND STRECHABLE STRAIN SENSORS BY TAILORED FRAGMENTATION OF CARBON-BASED CONDUCTORS
G. Lubineau
Y. Xin
X. Xu
J. Zhou
Stretchable sensors are needed for emerging applications such like wearable electronics, artifical e-skins. They shoudl show good perfromance in�sensitivity, stretchability and linearity.�Our strategy here is to develop a new family of sensors taking advantage of the special properties of�fragmented carbon-nanoparticles based geometries.�Our concept could readily be extended to�other conductive nano materials, paving the way for developing high-performance strain sensors.
title DESIGNING ULTRASENSITIVE AND STRECHABLE STRAIN SENSORS BY TAILORED FRAGMENTATION OF CARBON-BASED CONDUCTORS
url https://doi.org/10.5281/zenodo.15432284