article Open AccessTop 1% cited
Lightweight conductive graphene/thermoplastic polyurethane foams with ultrahigh compressibility for piezoresistive sensing
Journal of Materials Chemistry C · 2016 · Vol. 5(1) · pp. 73–83
Hu Liu(Zhengzhou University)Mengyao Dong(Zhengzhou University)Wenju Huang(Zhengzhou University)Jiachen Gao(Zhengzhou University)Kun Dai✉(Zhengzhou University)Jiang Guo(Knoxville College)Guoqiang Zheng(Zhengzhou University)Chuntai Liu✉(Zhengzhou University)Changyu Shen(Zhengzhou University)Zhanhu Guo✉(Knoxville College)
Abstract
Lightweight conductive graphene/thermoplastic polyurethane foams exhibited stable piezoresistive sensing signals at a strain of up to 90%.
Advanced Sensor and Energy Harvesting MaterialsConducting polymers and applicationsDielectric materials and actuatorsMaterials sciencePiezoresistive effectThermoplastic polyurethanePolyurethaneComposite materialGrapheneElectrical conductorThermoplasticCompressibilityElectrically conductive
Funding
- National Science Foundation
- China Postdoctoral Science Foundation
- China Scholarship Council
- Zhengzhou University
Citations
656
FWCI
57.37
field-weighted impact
References
66
Percentile
100%
vs. same field & year
Citations per year
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ACS Applied Materials & Interfaces · 2013 · 624 citations
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Facile Preparation of Lightweight Microcellular Polyetherimide/Graphene Composite Foams for Electromagnetic Interference Shielding
ACS Applied Materials & Interfaces · 2013 · 756 citations
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