Battery materials for ultrafast charging and discharging
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Summary
It is shown that batteries which obtain high energy density by storing charge in the bulk of a material can also achieve ultrahigh discharge rates, comparable to those of supercapacitors.
- Type
- article
- Published
- 2009-03-12
- Cited by
- 3,329
- References
- 31
- OpenAlex
- https://openalex.org/W2024565483
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:20592628
Keywords
Supercapacitor, Battery (electricity), Materials science, Energy storage, Power density
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Cited by
- Electrical Power Supply for Military Ground Troops
- Nanostructured carbon materials: fabrication and applications
- Suppression of phase separation in LiFePO₄ nanoparticles during battery discharge.
- Mesoscale Origin of the Enhanced Cycling-Stability of the Si-Conductive Polymer Anode for Li-ion Batteries
- Charge transfer kinetics at the solid–solid interface in porous electrodes
- Single‐Crystalline Tungsten Oxide Quantum Dots for Fast Pseudocapacitor and Electrochromic Applications
- Boron doped defective graphene as a potential anode material for Li-ion batteries.
- Bulk graphdiyne powder applied for highly efficient lithium storage.
- A general salt-templating method to fabricate vertically aligned graphitic carbon nanosheets and their metal carbide hybrids for superior lithium ion batteries and water splitting.
- A Free-Standing Sulfur/Nitrogen-Doped Carbon Nanotube Electrode for High-Performance Lithium/Sulfur Batteries
- Rectangular Co3O4 with micro-/nanoarchitectures: charge-driven PDDA-assisted synthesis and excellent lithium storage performance.
- Cs3W3PO13: A Tungsten Phosphate with One-Dimensional Zigzag Tunnels Exhibiting Strongly Anisotropic Thermal Expansion.
- Unraveling the Nature of Anomalously Fast Energy Storage in T-Nb2O5.
- New Anode Material for Lithium-Ion Batteries: Aluminum Niobate (AlNb11O29).
- Bicontinuous Spider Network Architecture of Free-Standing MnCoOX@NCNF Anode for Li-Ion Battery
- Self-regulation in chemical and bio-engineering materials for intelligent systems
- Predicting Active Material Utilization in LiFePO4 Electrodes Using a Multiscale Mathematical Model
- Mathematical modelling of LiFePO4 cathodes
- Photoluminescence from Inner Walls in Double-Walled Carbon Nanotubes and Hybrid Carbon/Titanium Dioxide Gels for Energy Conversion and Storage Applications
- Nanostrucured Lithium Iron Phosphate As Cathode Material For Lithium Ion-Batteries
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