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Superflexible Interconnected Graphene Network Nanocomposites for High-Performance Electromagnetic Interference Shielding

[Image: see text] Graphene-enhanced polymer matrix nanocomposites are attracting ever increasing attention in the electromagnetic (EM) interference (EMI) shielding field because of their improved electrical property. Normally, the graphene is introduced into the matrix by chemical functionalization...

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Autores principales: Xu, Fan, Chen, Ruofan, Lin, Zaishan, Qin, Yuyang, Yuan, Ye, Li, Ying, Zhao, Xu, Yang, Minglong, Sun, Xianxian, Wang, Shasha, Peng, Qingyu, Li, Yibin, He, Xiaodong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2018
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6641376/
https://www.ncbi.nlm.nih.gov/pubmed/31458611
http://dx.doi.org/10.1021/acsomega.8b00432
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author Xu, Fan
Chen, Ruofan
Lin, Zaishan
Qin, Yuyang
Yuan, Ye
Li, Ying
Zhao, Xu
Yang, Minglong
Sun, Xianxian
Wang, Shasha
Peng, Qingyu
Li, Yibin
He, Xiaodong
author_facet Xu, Fan
Chen, Ruofan
Lin, Zaishan
Qin, Yuyang
Yuan, Ye
Li, Ying
Zhao, Xu
Yang, Minglong
Sun, Xianxian
Wang, Shasha
Peng, Qingyu
Li, Yibin
He, Xiaodong
author_sort Xu, Fan
collection PubMed
description [Image: see text] Graphene-enhanced polymer matrix nanocomposites are attracting ever increasing attention in the electromagnetic (EM) interference (EMI) shielding field because of their improved electrical property. Normally, the graphene is introduced into the matrix by chemical functionalization strategy. Unfortunately, the electrical conductivity of the nanocomposite is weak because the graphene nanosheets are not interconnected. As a result, the electromagnetic interference shielding effectiveness of the nanocomposite is not as excellent as expected. Interconnected graphene network shows very good electrical conduction property, thus demonstrates excellent electromagnetic interference shielding effectiveness. However, its brittleness greatly limits its real application. Here, we propose to directly infiltrate flexible poly(dimethylsiloxane) (PDMS) into interconnected reduced graphene network and form nanocomposite. The nanocomposite is superflexible, light weight, enhanced mechanical and improved electrical conductive. The nanocomposite is so superflexible that it could be tied as spring-like sucker. Only 1.07 wt % graphene significantly increases the tensile strengths by 64% as compared to neat PDMS. When the graphene weight percent is 3.07 wt %, the nanocomposite has the more excellent electrical conductivity up to 103 S/m, thus more outstanding EMI shielding effectiveness of around 54 dB in the X-band are achieved, which means that 99.999% EM has been shielded by this nanocomposite. Bluetooth communication testing with and without our nanocomposite confirms that our flexible nanocomposite has very excellent shielding effect. This flexible nanocomposite is very promising in the application of wearable devices, as electromagnetic interference shielding shelter.
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spelling pubmed-66413762019-08-27 Superflexible Interconnected Graphene Network Nanocomposites for High-Performance Electromagnetic Interference Shielding Xu, Fan Chen, Ruofan Lin, Zaishan Qin, Yuyang Yuan, Ye Li, Ying Zhao, Xu Yang, Minglong Sun, Xianxian Wang, Shasha Peng, Qingyu Li, Yibin He, Xiaodong ACS Omega [Image: see text] Graphene-enhanced polymer matrix nanocomposites are attracting ever increasing attention in the electromagnetic (EM) interference (EMI) shielding field because of their improved electrical property. Normally, the graphene is introduced into the matrix by chemical functionalization strategy. Unfortunately, the electrical conductivity of the nanocomposite is weak because the graphene nanosheets are not interconnected. As a result, the electromagnetic interference shielding effectiveness of the nanocomposite is not as excellent as expected. Interconnected graphene network shows very good electrical conduction property, thus demonstrates excellent electromagnetic interference shielding effectiveness. However, its brittleness greatly limits its real application. Here, we propose to directly infiltrate flexible poly(dimethylsiloxane) (PDMS) into interconnected reduced graphene network and form nanocomposite. The nanocomposite is superflexible, light weight, enhanced mechanical and improved electrical conductive. The nanocomposite is so superflexible that it could be tied as spring-like sucker. Only 1.07 wt % graphene significantly increases the tensile strengths by 64% as compared to neat PDMS. When the graphene weight percent is 3.07 wt %, the nanocomposite has the more excellent electrical conductivity up to 103 S/m, thus more outstanding EMI shielding effectiveness of around 54 dB in the X-band are achieved, which means that 99.999% EM has been shielded by this nanocomposite. Bluetooth communication testing with and without our nanocomposite confirms that our flexible nanocomposite has very excellent shielding effect. This flexible nanocomposite is very promising in the application of wearable devices, as electromagnetic interference shielding shelter. American Chemical Society 2018-03-30 /pmc/articles/PMC6641376/ /pubmed/31458611 http://dx.doi.org/10.1021/acsomega.8b00432 Text en Copyright © 2018 American Chemical Society This is an open access article published under a Creative Commons Non-Commercial No Derivative Works (CC-BY-NC-ND) Attribution License (http://pubs.acs.org/page/policy/authorchoice_ccbyncnd_termsofuse.html) , which permits copying and redistribution of the article, and creation of adaptations, all for non-commercial purposes.
spellingShingle Xu, Fan
Chen, Ruofan
Lin, Zaishan
Qin, Yuyang
Yuan, Ye
Li, Ying
Zhao, Xu
Yang, Minglong
Sun, Xianxian
Wang, Shasha
Peng, Qingyu
Li, Yibin
He, Xiaodong
Superflexible Interconnected Graphene Network Nanocomposites for High-Performance Electromagnetic Interference Shielding
title Superflexible Interconnected Graphene Network Nanocomposites for High-Performance Electromagnetic Interference Shielding
title_full Superflexible Interconnected Graphene Network Nanocomposites for High-Performance Electromagnetic Interference Shielding
title_fullStr Superflexible Interconnected Graphene Network Nanocomposites for High-Performance Electromagnetic Interference Shielding
title_full_unstemmed Superflexible Interconnected Graphene Network Nanocomposites for High-Performance Electromagnetic Interference Shielding
title_short Superflexible Interconnected Graphene Network Nanocomposites for High-Performance Electromagnetic Interference Shielding
title_sort superflexible interconnected graphene network nanocomposites for high-performance electromagnetic interference shielding
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6641376/
https://www.ncbi.nlm.nih.gov/pubmed/31458611
http://dx.doi.org/10.1021/acsomega.8b00432
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