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Facile Fabrication of Conductive Graphene/Polyurethane Foam Composite and Its Application on Flexible Piezo-Resistive Sensors

Flexible pressure sensors have attracted tremendous research interests due to their wide applications in wearable electronics and smart robots. The easy-to-obtain fabrication and stable signal output are meaningful for the practical application of flexible pressure sensors. The graphene/polyurethane...

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Autores principales: Zhong, Weibing, Ding, Xincheng, Li, Weixin, Shen, Chengyandan, Yadav, Ashish, Chen, Yuanli, Bao, Mingze, Jiang, Haiqing, Wang, Dong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6722995/
https://www.ncbi.nlm.nih.gov/pubmed/31375016
http://dx.doi.org/10.3390/polym11081289
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author Zhong, Weibing
Ding, Xincheng
Li, Weixin
Shen, Chengyandan
Yadav, Ashish
Chen, Yuanli
Bao, Mingze
Jiang, Haiqing
Wang, Dong
author_facet Zhong, Weibing
Ding, Xincheng
Li, Weixin
Shen, Chengyandan
Yadav, Ashish
Chen, Yuanli
Bao, Mingze
Jiang, Haiqing
Wang, Dong
author_sort Zhong, Weibing
collection PubMed
description Flexible pressure sensors have attracted tremendous research interests due to their wide applications in wearable electronics and smart robots. The easy-to-obtain fabrication and stable signal output are meaningful for the practical application of flexible pressure sensors. The graphene/polyurethane foam composites are prepared to develop a convenient method for piezo-resistive devices with simple structure and outstanding sensing performance. Graphene oxide was prepared through the modified Hummers method. Polyurethane foam was kept to soak in the obtained graphene oxide aqueous solution and then dried. After that, reduced graphene oxide/polyurethane composite foam has been fabricated under air phase reduction by hydrazine hydrate vapor. The chemical components and micro morphologies of the prepared samples have been observed by using FT-IR and scanning electron microscopy (SEM). The results predicted that the graphene is tightly adhered to the bare surface of the pores. The pressure sensing performance has been also evaluated by measuring the sensitivity, durability, and response time. The results indicate that the value of sensitivity under the range of 0–6 kPa and 6–25 kPa are 0.17 kPa(−1) and 0.005 kPa(−1), respectively. Cycling stability test has been performed 30 times under three varying pressures. The signal output just exhibits slight fluctuations, which represents the good cycling stability of the pressure sensor. At the same stage, the response time of loading and unloading of 20 g weight turned out to be about 300 ms. These consequences showed the superiority of graphene/polyurethane composite foam while applied in piezo-resistive devices including wide sensitive pressure range, high sensitivity, outstanding durability, and fast response.
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spelling pubmed-67229952019-09-10 Facile Fabrication of Conductive Graphene/Polyurethane Foam Composite and Its Application on Flexible Piezo-Resistive Sensors Zhong, Weibing Ding, Xincheng Li, Weixin Shen, Chengyandan Yadav, Ashish Chen, Yuanli Bao, Mingze Jiang, Haiqing Wang, Dong Polymers (Basel) Article Flexible pressure sensors have attracted tremendous research interests due to their wide applications in wearable electronics and smart robots. The easy-to-obtain fabrication and stable signal output are meaningful for the practical application of flexible pressure sensors. The graphene/polyurethane foam composites are prepared to develop a convenient method for piezo-resistive devices with simple structure and outstanding sensing performance. Graphene oxide was prepared through the modified Hummers method. Polyurethane foam was kept to soak in the obtained graphene oxide aqueous solution and then dried. After that, reduced graphene oxide/polyurethane composite foam has been fabricated under air phase reduction by hydrazine hydrate vapor. The chemical components and micro morphologies of the prepared samples have been observed by using FT-IR and scanning electron microscopy (SEM). The results predicted that the graphene is tightly adhered to the bare surface of the pores. The pressure sensing performance has been also evaluated by measuring the sensitivity, durability, and response time. The results indicate that the value of sensitivity under the range of 0–6 kPa and 6–25 kPa are 0.17 kPa(−1) and 0.005 kPa(−1), respectively. Cycling stability test has been performed 30 times under three varying pressures. The signal output just exhibits slight fluctuations, which represents the good cycling stability of the pressure sensor. At the same stage, the response time of loading and unloading of 20 g weight turned out to be about 300 ms. These consequences showed the superiority of graphene/polyurethane composite foam while applied in piezo-resistive devices including wide sensitive pressure range, high sensitivity, outstanding durability, and fast response. MDPI 2019-08-01 /pmc/articles/PMC6722995/ /pubmed/31375016 http://dx.doi.org/10.3390/polym11081289 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhong, Weibing
Ding, Xincheng
Li, Weixin
Shen, Chengyandan
Yadav, Ashish
Chen, Yuanli
Bao, Mingze
Jiang, Haiqing
Wang, Dong
Facile Fabrication of Conductive Graphene/Polyurethane Foam Composite and Its Application on Flexible Piezo-Resistive Sensors
title Facile Fabrication of Conductive Graphene/Polyurethane Foam Composite and Its Application on Flexible Piezo-Resistive Sensors
title_full Facile Fabrication of Conductive Graphene/Polyurethane Foam Composite and Its Application on Flexible Piezo-Resistive Sensors
title_fullStr Facile Fabrication of Conductive Graphene/Polyurethane Foam Composite and Its Application on Flexible Piezo-Resistive Sensors
title_full_unstemmed Facile Fabrication of Conductive Graphene/Polyurethane Foam Composite and Its Application on Flexible Piezo-Resistive Sensors
title_short Facile Fabrication of Conductive Graphene/Polyurethane Foam Composite and Its Application on Flexible Piezo-Resistive Sensors
title_sort facile fabrication of conductive graphene/polyurethane foam composite and its application on flexible piezo-resistive sensors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6722995/
https://www.ncbi.nlm.nih.gov/pubmed/31375016
http://dx.doi.org/10.3390/polym11081289
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