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High piezo-resistive performances of anisotropic composites realized by embedding rGO-based chitosan aerogels into open cell polyurethane foams

Academic Article
Publication Date:
2019
abstract:
Anisotropic aerogel-foam composites were developed by embedding a reduced graphene oxide (rGO)/chitosan aerogel directly into an open-cell polyurethane foam through an in situ bidirectional freeze-drying process. The resulting aerogel-foam composites possess both excellent compression-resilience performance and stable piezo-resistive properties due, respectively, to the excellent mechanical properties of polyurethane foams and to the presence of a chitosan-based aerogel loaded with rGO. The latter, indeed, provides outstanding electrical properties due to its conductive and parallel flat lamellar structure. It has been proven that both mechanical and piezo-resistive properties are stable even after 1000 loading/unloading cycles and a reduction of the electrical resistance of about 86% is observed upon the application of a 60% strain. The high sensitivity, long cycling life, and reliable performance over a wide strain range make this unique anisotropic aerogel-foam composite a highly promising candidate for the production of wearable sensors and healthcare monitoring devices.
Iris type:
01.01 Articolo in rivista
Keywords:
chitosan; graphene; biomechanics; anisotropy; lamellar structures; polyurethanes
List of contributors:
Stanzione, Mariamelia; Kaciulis, Saulius; Lavorgna, Marino; Cerruti, Pierfrancesco; Gentile, Gennaro; Buonocore, GIOVANNA GIULIANA; Verdolotti, Letizia
Authors of the University:
BUONOCORE GIOVANNA GIULIANA
CERRUTI PIERFRANCESCO
GENTILE GENNARO
LAVORGNA MARINO
STANZIONE MARIAMELIA
VERDOLOTTI LETIZIA
Handle:
https://iris.cnr.it/handle/20.500.14243/387077
Published in:
NANOSCALE (PRINT)
Journal
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