[go: up one dir, main page]
More Web Proxy on the site http://driver.im/

Kong et al., 2018 - Google Patents

Fabrication of super-stretchable and electrical conductive membrane of spandex/multi-wall carbon nanotube/reduced graphene oxide composite

Kong et al., 2018

Document ID
6554014990729409099
Author
Kong Q
Luo Z
Wang Y
Wang B
Publication year
Publication venue
Journal of Polymer Research

External Links

Snippet

Hybrid conductive fillers (hybrids) are prepared through simultaneous chemical reduction of the graphene oxide and acid-treated multi-wall carbon nanotube in the presence of hydrazine. Subsequently, the thermoplastic spandex-based composite membranes with …
Continue reading at link.springer.com (other versions)

Similar Documents

Publication Publication Date Title
Chen et al. Advances in responsively conductive polymer composites and sensing applications
Kong et al. Fabrication of super-stretchable and electrical conductive membrane of spandex/multi-wall carbon nanotube/reduced graphene oxide composite
Xie et al. Magnetoresistive and piezoresistive polyaniline nanoarrays in-situ polymerized surrounding magnetic graphene aerogel
Huang et al. Ultrasensitive MWCNT/PDMS composite strain sensor fabricated by laser ablation process
Wu et al. Stretchable strain sensors based on PDMS composites with cellulose sponges containing one-and two-dimensional nanocarbons
Boland et al. Sensitive, high-strain, high-rate bodily motion sensors based on graphene–rubber composites
Costa et al. Highly sensitive piezoresistive graphene-based stretchable composites for sensing applications
Sharma et al. Recent progressive developments in conductive-fillers based polymer nanocomposites (CFPNC’s) and conducting polymeric nanocomposites (CPNC’s) for multifaceted sensing applications
Zhao et al. Constructing a continuous reduced graphene oxide network in porous plant fiber sponge for highly compressible and sensitive piezoresistive sensors
Hwang et al. Electromechanical strain sensing using polycarbonate-impregnated carbon nanotube–graphene nanoplatelet hybrid composite sheets
Cravanzola et al. Carbon-based piezoresistive polymer composites: Structure and electrical properties
Zheng et al. Stretchable polyurethane composite foam triboelectric nanogenerator with tunable microwave absorption properties at elevated temperature
Xiao et al. Interface-engineered reduced graphene oxide assembly on nanofiber surface for high performance strain and temperature sensing
Hao et al. Constructing 3D graphene network in rubber nanocomposite via liquid-phase redispersion and self-assembly
Benchirouf et al. Electromechanical behavior of chemically reduced graphene oxide and multi-walled carbon nanotube hybrid material
Luo et al. Fabrication and characterization of porous CNF/PDMS nanocomposites for sensing applications
Das et al. MXene-based elastomer mimetic stretchable sensors: design, properties, and applications
Chandrasekaran et al. Fracture, failure and compression behaviour of a 3D interconnected carbon aerogel (Aerographite) epoxy composite
Ahuja et al. Chemically and mechanically robust SWCNT based strain sensor with monotonous piezoresistive response for infrastructure monitoring
Ma et al. Flexible sensor based on polymer nanocomposites reinforced by carbon nanotube foam derivated from cotton
Jyoti et al. Mechanical, electrical and thermal properties of graphene oxide-carbon nanotube/ABS hybrid polymer nanocomposites
He et al. Wearable gas/strain sensors based on reduced graphene oxide/linen fabrics
Bharadwaj et al. Long length MWCNT/TPU composite materials for stretchable and wearable strain sensors
Qu et al. Electrically conductive NBR/CB flexible composite film for ultrastretchable strain sensors: Fabrication and modeling
Yang et al. A highly conductive MXene-based rubber composite with relatively stable conductivity under small deformation and high sensing sensitivity at large strain