Recent Advances in Metal Oxide‐based Electrode Architecture Design for Electrochemical Energy Storage
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Summary
Recent advances in strategies for advanced metal oxide-based hybrid nanostructure design are reviewed, with the focus on the binder-free film/array electrodes that can provide larger electrochemically active surface area, faster electron transport and superior ion diffusion, thus leading to substantially improved cycling and rate performance.
- Type
- review
- Published
- 2012-10-02
- Cited by
- 2,148
- References
- 127
- OpenAlex
- https://openalex.org/W2081738501
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:205246473
Keywords
Materials science, Supercapacitor, Nanotechnology, Electrode, Nanostructure
References
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- High‐Performance Supercapacitors Based on Intertwined CNT/V2O5 Nanowire Nanocomposites
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- Highly ordered mesoporous Cr2O3 materials with enhanced performance for gas sensors and lithium ion batteries.
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- Heterogeneous nanostructured electrode materials for electrochemical energy storage.
- Ionic-liquid materials for the electrochemical challenges of the future.
- Flexible carbon nanotube/polyaniline paper-like films and their enhanced electrochemical properties
- What are batteries, fuel cells, and supercapacitors?
Cited by
- Pearson's principle inspired generalized strategy for the fabrication of metal hydroxide and oxide nanocages.
- Facile fabrication of hierarchical ZnCo2O4/NiO core/shell nanowire arrays with improved lithium-ion battery performance.
- General synthesis of multi-shelled mixed metal oxide hollow spheres with superior lithium storage properties.
- Hierarchical hollow MnO2 nanofibers with enhanced supercapacitor performance.
- Formation of ZnCo2O4@MnO2 core-shell electrode materials for hybrid supercapacitor.
- Triple-Shelled Manganese-Cobalt Oxide Hollow Dodecahedra with Highly Enhanced Performance for Rechargeable Alkaline Batteries.
- One-pot fabrication of Co3O4 microspheres via hydrothermal method at low temperature for high capacity supercapacitor
- Dendritic CuO structures synthesized by bipolar electrochemical process for electrochemical energy storage
- Carbon-Anchored MnO Nanosheets as an Anode for High-Rate and Long-Life Lithium-Ion Batteries.
- Enhanced supercapacitor performance by fabricating hierarchical nanoporous nickel/nickel hydroxide structure
- Encapsulation architecture for energy storage
- The beneficial effect of nanocrystalline and amorphous nature on the anode performance of manganese oxide for lithium ion batteries
- Amorphous GeOx-Coated Reduced Graphene Oxide Balls with Sandwich Structure for Long-Life Lithium-Ion Batteries.
- Construction of Co/Co 3 O 4 –C ternary core-branch arrays as enhanced anode materials for lithium ion batteries
- High-rate supercapacitor utilizing hydrous ruthenium dioxide nanotubes
- Facile synthesis of amorphous Ni(OH)2 for high-performance supercapacitors via electrochemical assembly in a reverse micelle
- Two-dimensional titanium carbide electrode with large mass loading for supercapacitor
- Polyhedral MnO nanocrystals anchored on reduced graphene oxide as an anode material with superior lithium storage capability
- Co-reduction self-assembly of reduced graphene oxide nanosheets coated Cu2O sub-microspheres core-shell composites as lithium ion battery anode materials
- Rapid microwave-assisted synthesis of mesoporous NiMoO4 nanorod/reduced graphene oxide composites for high-performance supercapacitors
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