Gigantic enhancement in the dielectric properties of polymer-based composites using core/shell MWCNT/amorphous carbon nanohybrids.
@article{Guo2015GiganticEI,
title={Gigantic enhancement in the dielectric properties of polymer-based composites using core/shell MWCNT/amorphous carbon nanohybrids.},
author={Qikai Guo and Qingzhong Xue and Jin Sun and Mingdong Dong and Fujun Xia and Zhongyang Zhang},
journal={Nanoscale},
year={2015},
volume={7 8},
pages={
3660-7
}
}Novel core/shell structured multi-walled carbon nanotube/amorphous carbon (MWCNT@AC) nanohybrids were successfully prepared using a simple and novel method. Subsequently, the MWCNT@AC nanohybrids were used as fillers to enhance the dielectric properties of poly(vinylidene fluoride) (PVDF) based composites. It is found that the dielectric constant of the MWCNT@AC/PVDF composites can reach 5910 (the dielectric loss is ∼2), which is considerably better than that of MWCNT/PVDF composites. The…
Figures from this paper
59 Citations
Ultrahigh permittivity of polymer nanocomposites based on surface-modified amorphous carbon/MWCNTs shell/core structured nanohybrids
- Materials Science
- 2017
Excellent dielectric properties of PVDF-based composites filled with carbonized PAN/PEG copolymer fibers
- Materials Science
- 2016
A Facile Strategy to Enhance the Dielectric and Mechanical Properties of MWCNTs/PVDF Composites with the Aid of MMA-co-GMA Copolymer
- Materials ScienceMaterials
- 2018
A practical and simple strategy for preparing composites with excellent dielectric properties, which are promising for applications in electronics devices are proposed.
Enhanced dielectric performance of PDMS-based three-phase percolative nanocomposite films incorporating a high dielectric constant ceramic and conductive multi-walled carbon nanotubes
- Engineering
- 2018
Three-phase composite films CCTO@MWCNT/PDMS with enhanced dielectric constant (e) and low dielectric loss are prepared by embedding covalently bonded calcium copper titanate (CaCu3Ti4O12, CCTO) with…
Fluoro-polymer-coated carbon nanotubes for improved interfacial interactions and dielectric properties in MWCNTs/PVDF composites
- Materials ScienceJournal of Materials Science
- 2019
In this paper, the fluoro-polymer-coated multiwall carbon nanotubes (MWCNTs) were prepared by in situ atom transfer radical polymerization of 2-(perfluoroalkyl) ethyl methacrylate (FEMA) on the…
Achieving large dielectric property improvement in polymer/carbon nanotube composites by engineering the nanotube surface via atom transfer radical polymerization
- Materials Science, Engineering
- 2015
Enhanced Dielectric Performance of Polymer Nanocomposites Based on CNT/MnO2 Nanowire Hybrid Nanostructure
- Materials Science
- 2017
We report a new highly efficient polymer nanocomposite for charge storage applications based on carbon nanotube (CNT) and MnO2 nanowire (MnO2NW). Our study suggested that combination of conductive…
EFFECT OF MnO 2 NANOWIRE ON RHEOLOGICAL AND DIELECTRIC PROPERTIES OF PVDF / CNT HYBRID NANOCOMPOSITES
- Materials Science
- 2017
Poly (vinylidene fluoride) (PVDF) matrix hybrid nanocomposites incorporating MnO2 nanowire (MnO2NW) and Carbon nanotubes (CNT), were fabricated by melt mixing in a batch mixer followed by hot…
Core–shell structured BaTiO3@carbon hybrid particles for polymer composites with enhanced dielectric performance
- Materials Science, Engineering
- 2015
Core–shell structured BaTiO3@carbon (BT@C) hybrid particles were fabricated via chemical vapor deposition (CVD). Scanning electron microscopy, transmission electron microscopy, X-ray diffraction and…
References
SHOWING 1-10 OF 35 REFERENCES
Graphene oxide-encapsulated carbon nanotube hybrids for high dielectric performance nanocomposites with enhanced energy storage density.
- EngineeringNanoscale
- 2013
This strategy provides a new pathway to achieve CNT-based polymer composites with high dielectric performances for energy storage applications by designing and fabricated a new class of candidates composed of graphene oxide-encapsulated carbon nanotube (GO-e-CNT) hybrids.
Core-shell structured poly(methyl methacrylate)/BaTiO3 nanocomposites prepared by in situ atom transfer radical polymerization: a route to high dielectric constant materials with the inherent low loss of the base polymer
- Materials Science
- 2011
Core-shell structured BaTiO3/poly(methyl methacrylate) (PMMA) nanocomposites were successfully prepared by in situ atom transfer radical polymerization (ATRP) of methyl methacrylate (MMA) from the…
Effective synergistic effect of Al2O3 and SiC microparticles on the growth of carbon nanotubes and their application in high dielectric permittivity polymer composites
- Materials Science, Engineering
- 2014
Owing to their excellent intrinsic properties, carbon nanotubes (CNTs) have been widely used to reinforce polymer composites. However, CNT aggregation, the poor CNT/matrix nanoscale interface and…
Large dielectric constant of the chemically functionalized carbon nanotube/polymer composites
- Materials Science
- 2008
Surface-functionalized MWNTs with emeraldine base: preparation and improving dielectric properties of polymer nanocomposites.
- Materials ScienceACS applied materials & interfaces
- 2011
A comparative study of the dielectric properties of poly(vinylidene fluoride) (PVDF) based nanocomposites with pristine multiwalled carbon nanotubes (MWNTs) and surface-modified MWNTs with core/shell…
Highly aligned graphene/polymer nanocomposites with excellent dielectric properties for high-performance electromagnetic interference shielding.
- Materials ScienceAdvanced materials
- 2014
Self-aligned in situ reduced graphene oxide (rGO)/polymer nanocomposites with the engineered structure and properties present high performance electromagnetic interference shielding with a remarkable shilding efficiency of 38 dB.
Fabrication and enhanced dielectric properties of graphene–polyvinylidene fluoride functional hybrid films with a polyaniline interlayer
- Physics
- 2013
Graphene–polyvinylidene fluoride hybrid films (GPNs–PVDF) with a polyaniline (PANI) interlayer are fabricated by a facile and effective process. The morphology of the graphene–polyaniline nanoflakes…
Carbon nanotube composites with high dielectric constant at low percolation threshold
- Physics
- 2005
In this letter, the dielectric properties of the untreated multiwall carbon-nanotubes∕poly(vinylidene fluoride) (MWNT∕PVDF) composites are studied. Towards low frequencies, the dielectric constant of…
Synthesis of uniform Te@ carbon-rich composite nanocables with photoluminescence properties and carbonaceous nanofibers by the hydrothermal carbonization of glucose
- Chemistry, Materials Science
- 2006
A hydrothermal carbonization route has been designed for the syntheses of uniform core−shell Te@carbon-rich composite nanocables with ultrathin and ultralong Te nanowires as the core component and…
Influence of Stacking Morphology and Edge Nitrogen Doping on the Dielectric Performance of Graphene–Polymer Nanocomposites
- Materials Science
- 2014
We demonstrate that functional groups obtained by varying the preparation route of reduced graphene oxide (rGO) highly influence filler morphology and the overall dielectric performance of…









