Electrochemical energy storage in montmorillonite K10 clay based composite as supercapacitor using ionic liquid electrolyte.
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Summary
The present study demonstrates for the first time, the excellent potential of clay-based composites for high power energy storage device applications.
- Type
- article
- Published
- 2016-02-15
- Cited by
- 71
- References
- 46
- OpenAlex
- https://openalex.org/W26609925
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:21828010
Keywords
Computer science
References
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- High‐Volumetric Performance Aligned Nano‐Porous Microwave Exfoliated Graphite Oxide‐based Electrochemical Capacitors
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- Fast and reversible surface redox reaction of graphene–MnO2 composites as supercapacitor electrodes
- What are batteries, fuel cells, and supercapacitors?
- Metal cation-exchanged montmorillonite clay as catalysts for hydroxyalkylation reaction
- High temperature carbon–carbon supercapacitor using ionic liquid as electrolyte
- Porous 3D graphene-based bulk materials with exceptional high surface area and excellent conductivity for supercapacitors
- Electrodeposited Ni(OH)2 nanoflakes on graphite nanosheets prepared by plasma-enhanced chemical vapor deposition for supercapacitor electrode
- Transesterification of β-ketoesters with alcohols catalyzed by montmorillonite K-10
- Activated graphene-based carbons as supercapacitor electrodes with macro- and mesopores.
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- Measurements of ionic liquids thermal conductivity and thermal diffusivity
- Nitrogen-doped activated carbon/graphene composites as high-performance supercapacitor electrodes
- Quaternized carboxymethyl chitosan/organic montmorillonite nanocomposite as a novel cosmetic ingredient against skin aging.
- Supercapacitors utilising ionic liquids
- Polyglycolide–montmorillonite as a novel nanocomposite platform for biosensing applications
- Skeleton/skin structured (RGO/CNTs)@PANI composite fiber electrodes with excellent mechanical and electrochemical performance for all-solid-state symmetric supercapacitors.
- Effect of Li2CoMn3O8 Nanostructures Synthesized by a Combustion Method on Montmorillonite K10 as a Potential Hydrogen Storage Material
- Ionic Liquids as Environmentally Benign Electrolytes for High‐Performance Supercapacitors
- Controllable mechanical properties of epoxy composites by incorporating self-assembled carbon nanotube–montmorillonite
- Synthesis of dysprosium cerate nanostructures using Phoenix dactylifera extract as novel green fuel and investigation of their electrochemical hydrogen storage and Coulombic efficiency
- One-Pot Hydrothermal Synthesis of Polyethylenimine Functionalized Magnetic Clay for Efficient Removal of Noxious Cr(VI) from Aqueous Solutions
- Green synthesis, characterization and investigation of the electrochemical hydrogen storage properties of Dy2Ce2O7 nanostructures with fig extract
- Surface modified montmorillonite with cationic surfactants: Preparation, characterization, and dye adsorption from aqueous solution
- Highly flexible and low capacitance loss supercapacitor electrode based on hybridizing decentralized conjugated polymer chains with MXene
- Ag-doped sepiolite intercalated graphene nanostructure for hybrid capacitive deionization system
- Composite nanomaterials based on 1-butyl-3-methylimidazolium dicianamide and clays
- Structural and Thermal Properties of Montmorillonite/Ionic Liquid Composites
- Nd2Sn2O7 nanostructures: Green synthesis and characterization using date palm extract, a potential electrochemical hydrogen storage material
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