Sodium ion insertion in hollow carbon nanowires for battery applications.
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Summary
Hollow carbon nanowires prepared through pyrolyzation of a hollow polyaniline nanowire precursor deliver high reversible capacity and excellent cycling stability and the good Na-ion insertion property is attributed to the short diffusion distance in the HCNWs and the large interlayer distance.
- Type
- article
- Published
- 2012-06-13
- Cited by
- 1,785
- References
- 40
- OpenAlex
- https://openalex.org/W2029817687
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:26144194
Keywords
Anode, Nanowire, Materials science, Ion, Sodium-ion battery
References
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- The Effect of Hydrogen Bonding on Self‐Assembled Polyaniline Nanostructures
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- Nanostructured bilayered vanadium oxide electrodes for rechargeable sodium-ion batteries.
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- Electrochemical synthesis of binary graphite-lithium intercalation compounds
- Carbon-silicon core-shell nanowires as high capacity electrode for lithium ion batteries.
- Structural and electrochemical characterization of carbonaceous mesophase spherule anode material for rechargeable lithium batteries
Cited by
- A size-dependent sodium storage mechanism in Li4Ti5O12 investigated by a novel characterization technique combining in situ X-ray diffraction and chemical sodiation.
- Facile Strategy to Low-Cost Synthesis of Hierarchically Porous, Active Carbon of High Graphitization for Energy Storage.
- Two-Dimensional Unilamellar Cation-Deficient Metal Oxide Nanosheet Superlattices for High-Rate Sodium Ion Energy Storage.
- Rational Design of Carbon Nanomaterials for Electrochemical Sodium Storage and Capture
- Self-regulation in chemical and bio-engineering materials for intelligent systems
- Simply mixed commercial red phosphorus and carbon nanotube composite with exceptionally reversible sodium-ion storage.
- Solid-State Fabrication of SnS2/C Nanospheres for High-Performance Sodium Ion Battery Anode.
- Electrode potential and activation energy of sodium transition-metal oxides as cathode materials for sodium batteries: A first-principles investigation
- Improved sodium-storage performance of stannous sulfide@reduced graphene oxide composite as high capacity anodes for sodium-ion batteries
- Failure Mechanics of Functional Nanostructures in Advanced Technologies
- Ordered-mesoporous Nb2O5/carbon composite as a sodium insertion material
- Sulfur covalently bonded graphene with large capacity and high rate for high-performance sodium-ion batteries anodes
- Dual hetero atom containing bio-carbon: Multifunctional electrode material for High Performance Sodium-ion Batteries and Oxygen Reduction Reaction
- Electrochemical performance of hard carbon negative electrodes for ionic liquid-based sodium ion batteries over a wide temperature range
- Effects of binders on electrochemical performance of nitrogen-doped carbon nanotube anode in sodium-ion battery
- Co9S8-carbon composite as anode materials with improved Na-storage performance
- ZnSb/C composite anode in additive free electrolyte for sodium ion batteries
- Porous nitrogen doped carbon sphere as high performance anode of sodium-ion battery
- Self-wrapped Sb/C nanocomposite as anode material for High-performance sodium-ion batteries
- Enhanced sodium storage property of copper nitrate hydrate by carbon nanotube
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