Sulfur covalently bonded graphene with large capacity and high rate for high-performance sodium-ion batteries anodes
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- Type
- article
- Published
- 2015-07-01
- Cited by
- 177
- References
- 47
- OpenAlex
- https://openalex.org/W654726914
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:92969022
Keywords
Materials science, Anode, Graphene, Battery (electricity), Sodium-ion battery
References
- Carbon black: a promising electrode material for sodium-ion batteries
- Update on Na-based battery materials. A growing research path
- Nickel hexacyanoferrate nanoparticle electrodes for aqueous sodium and potassium ion batteries.
- Room-temperature sodium-ion batteries: Improving the rate capability of carbon anode materials by templating strategies
- SIMULTANEOUS MEASUREMENTS AND MODELING OF THE ELECTROCHEMICAL IMPEDANCE AND THE CYCLIC VOLTAMMETRIC CHARACTERISTICS OF GRAPHITE ELECTRODES DOPED WITH LITHIUM
- Adsorption and diffusion of Li on pristine and defective graphene.
- Electrochemical Na Insertion and Solid Electrolyte Interphase for Hard‐Carbon Electrodes and Application to Na‐Ion Batteries
- Negative Electrodes for Lithium- and Sodium-Ion Batteries Obtained by Heat-Treatment of Petroleum Cokes below 1000°C
- A multifunctional 3.5 V iron-based phosphate cathode for rechargeable batteries.
- Cathode properties of Na3M2(PO4) 2F3 [M = Ti, Fe, V] for sodium-ion batteries
- Development and Simulation of Sulfur‐doped Graphene Supported Platinum with Exemplary Stability and Activity Towards Oxygen Reduction
- Sodium ion insertion in hollow carbon nanowires for battery applications.
- Reversible NaFePO4 electrode for sodium secondary batteries
- The role of graphene for electrochemical energy storage.
- Reduced graphene oxide with superior cycling stability and rate capability for sodium storage
- Mechanisms for Lithium Insertion in Carbonaceous Materials
- Electrochemical Insertion of Sodium into Carbon
- Sodium‐Ion Batteries
- Quadratic integration over the three-dimensional Brillouin zone
- Is lithium the new gold?
Cited by
- A Hierarchical N/S‐Codoped Carbon Anode Fabricated Facilely from Cellulose/Polyaniline Microspheres for High‐Performance Sodium‐Ion Batteries
- Reactive Oxygen-Doped 3D Interdigital Carbonaceous Materials for Li and Na Ion Batteries.
- Heteroatom enhanced sodium ion capacity and rate capability in a hydrogel derived carbon give record performance in a hybrid ion capacitor
- Microplasma-assisted bottom-up synthesis of graphene nanosheets with superior sodium-ion storage performance
- Structural and chemical synergistic encapsulation of polysulfides enables ultralong-life lithium–sulfur batteries
- One-pot Biotemplate Synthesis of FeS2 Decorated Sulfur-doped Carbon Fiber as High Capacity Anode for Lithium-ion Batteries
- Scalable synthesis of self-standing sulfur-doped flexible graphene films as recyclable anode materials for low-cost sodium-ion batteries
- Nanooctahedra Particles Assembled FeSe2 Microspheres Embedded into Sulfur-Doped Reduced Graphene Oxide Sheets As a Promising Anode for Sodium Ion Batteries.
- Graphene‐Based Nanocomposites for Energy Storage
- Iron Telluride-Decorated Reduced Graphene Oxide Hybrid Microspheres as Anode Materials with Improved Na-Ion Storage Properties.
- Covalent sulfur for advanced room temperature sodium-sulfur batteries
- Sodium ion storage in reduced graphene oxide
- Carbon-Coated Silicon Nanowires on Carbon Fabric as Self-Supported Electrodes for Flexible Lithium-Ion Batteries.
- Nitrogen and sulfur co-doped hollow carbon nanofibers decorated with sulfur doped anatase TiO2 with superior sodium and lithium storage properties
- S‐Doped N‐Rich Carbon Nanosheets with Expanded Interlayer Distance as Anode Materials for Sodium‐Ion Batteries
- Three dimensional cellular architecture of sulfur doped graphene: self-standing electrode for flexible supercapacitors, lithium ion and sodium ion batteries
- Carbon Anode Materials for Advanced Sodium‐Ion Batteries
- Phosphorus Enhanced Intermolecular Interactions of SnO2 and Graphene as an Ultrastable Lithium Battery Anode.
- Porous carbon modified with sulfur in energy related applications
- Graphene: a promising 2D material for electrochemical energy storage.
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