Effect of Aluminum Foil Etching Process on Graphene Super Capacitor
@article{Cheng2015EffectOA, title={Effect of Aluminum Foil Etching Process on Graphene Super Capacitor}, author={S. J. Cheng}, journal={Chemical engineering transactions}, year={2015}, volume={46}, pages={655-660} }
With rapidly development of the economic and society, environmental pollution become a imminent problem in modern society. Super capacitors as a kind of green energy has a broad application prospect, and the graphene is the most commonly used material in super capacitors. This paper mainly studies the impact of different aluminum foil etching conditions on the performance of graphene super capacitor. This paper take the experiments of aluminum foils under different etching time, solution…
2 Citations
Towards enhanced energy density of graphene-based supercapacitors: Current status, approaches, and future directions
- EngineeringJournal of Power Sources
- 2018
Synthesis of Graphene Oxide/Polypyrrole (GO/PPy) from Used Batteries as Electrodes in Supercapacitor Cells
- Materials Science
- 2019
Fabrication with graphite-modified GO/PPy composites have been studied from used batteries using the Hummers method. This research was performance in four steps: graphite powder preparation, GO…
References
SHOWING 1-10 OF 19 REFERENCES
Effects of polymer corrosion inhibitor on widening etch tunnels of aluminum foil for capacitor
- Materials Science
- 2014
Flexible graphene–polyaniline composite paper for high-performance supercapacitor
- Materials Science, Engineering
- 2013
Free-standing graphene paper with a grey metallic luster has been fabricated for the first time, by a convenient one-step method on a large scale. Herein, the assembly of graphene oxide dispersion…
Functional composition and super‐capacitor properties of graphite oxide reduced with hot sulfuric acid
- Materials Science
- 2013
The heating of graphite oxide in concentrated sulfuric acid results in partial removal of oxygen and formation of holes with a size of ∼2 nm. The Raman scattering shows that the distance between the…
Effect of tunnel structure on the specific capacitance of etched aluminum foil
- Materials ScienceInternational Journal of Minerals, Metallurgy, and Materials
- 2014
The morphology of etched aluminum foil was observed using scanning electron microscopy, which led to the establishment of a cylindrical model and two merged models, considering the fixed weight loss…
Effect of carbon blacks filler addition on electrochemical behaviors of Co3O4/graphene nanosheets as a supercapacitor electrodes
- Materials Science
- 2013
Screen‐Printable Thin Film Supercapacitor Device Utilizing Graphene/Polyaniline Inks
- Engineering
- 2013
including printable transistors, [ 3 ] solar cells, [ 4 ] and organic light emitting diodes [ 5 ] has the potential to meet these goals in future applications. However, a compatible energy source for…
Raman spectroscopy as a versatile tool for studying the properties of graphene.
- ChemistryNature nanotechnology
- 2013
The state of the art, future directions and open questions in Raman spectroscopy of graphene are reviewed, and essential physical processes whose importance has only recently been recognized are described.
Progress in graphene-based electrode materials for supercapacitor
- Materials Science, Engineering
- 2013
The preparation methods of graphene-based electrode materials and its performance characteristics were summarized. Problems and development trend of graphene-based electrode materials were simply…
Concentration dependence of graphene oxide-nanoneedle manganese oxide composites reduced by hydrazine hydrate for an electrochemical supercapacitor.
- Materials Science, EngineeringPhysical chemistry chemical physics : PCCP
- 2013
The characterization of morphology and microstructure of the as-prepared composites demonstrates that MnO2 is successfully formed on the GO surface and GO is successfully reduced by using hydrazine hydrate as a reducing agent.
Graphene plasmonics
- Physics
- 2012
NATURE PHOTONICS | VOL 6 | NOVEMBER 2012 | www.nature.com/naturephotonics 749 Graphene, a two-dimensional (2D) form of carbon in which the atoms are arranged in a honeycomb lattice1,2, has already…