中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Self-Sensing, Ultra light, and Conductive 3D Graphene/Iron Oxide Aerogel Elastomer Deformable in a Magnetic Field

文献类型:期刊论文

作者Xu, X; Li, H; Zhang, QQ; Hu, H; Zhao, ZB; Li, JH; Li, JY; Qiao, Y; Gogotsi, Y
刊名ACS NANO
出版日期2015
卷号9期号:4页码:3969—3977
关键词CARBON-NANOTUBE HIGHLY EFFICIENT REDUCED GRAPHENE LITHIUM STORAGE SPONGY GRAPHENE NANOPARTICLES COMPOSITES ARCHITECTURES SCAFFOLDS HYDROGELS
英文摘要Three-dimensional (3D) graphene aerogels (GA) show promise for applications in supercapacitors, electrode materials, gas sensors, and oil absorption due to their high porosity, mechanical strength, and electrical conductivity. However, the control, actuation, and response properties of graphene aerogels have not been well studied. In this paper, we synthesized 3D graphene aerogels decorated with Fe3O4 nanoparticles (Fe3O4/GA) by self-assembly of graphene with simultaneous decoration by Fe3O4 nanoparticles using a modified hydrothermal reduction process. The aerogels exhibit up to 52% reversible magnetic field-induced strain and strain-dependent electrical resistance that can be used to monitor the degree of compression/stretching of the material. The density of Fe3O4/GA is only about 5.8 mg cm(-3), making it an ultralight magnetic elastomer with potential applications in self-sensing soft actuators, microsensors, microswitches, and environmental remediation.
收录类别SCI
语种英语
公开日期2015-12-24
源URL[http://ir.sinap.ac.cn/handle/331007/24563]  
专题上海应用物理研究所_中科院上海应用物理研究所2011-2017年
推荐引用方式
GB/T 7714
Xu, X,Li, H,Zhang, QQ,et al. Self-Sensing, Ultra light, and Conductive 3D Graphene/Iron Oxide Aerogel Elastomer Deformable in a Magnetic Field[J]. ACS NANO,2015,9(4):3969—3977.
APA Xu, X.,Li, H.,Zhang, QQ.,Hu, H.,Zhao, ZB.,...&Gogotsi, Y.(2015).Self-Sensing, Ultra light, and Conductive 3D Graphene/Iron Oxide Aerogel Elastomer Deformable in a Magnetic Field.ACS NANO,9(4),3969—3977.
MLA Xu, X,et al."Self-Sensing, Ultra light, and Conductive 3D Graphene/Iron Oxide Aerogel Elastomer Deformable in a Magnetic Field".ACS NANO 9.4(2015):3969—3977.

入库方式: OAI收割

来源:上海应用物理研究所

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