Phosphorus and phosphide nanomaterials for sodium-ion batteries
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- Type
- article
- Published
- 2017-08-24
- Cited by
- 128
- References
- 123
- OpenAlex
- https://openalex.org/W2746048347
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:102657510
Keywords
Phosphide, Anode, Sodium, Nanomaterials, Electrochemistry
References
- Simply mixed commercial red phosphorus and carbon nanotube composite with exceptionally reversible sodium-ion storage.
- Three-dimensionally interconnected nickel–antimony intermetallic hollow nanospheres as anode material for high-rate sodium-ion batteries
- Optical tuning of exciton and trion emissions in monolayer phosphorene
- Layer-Controlled Band Gap and Anisotropic Excitons in Phosphorene
- Cobalt phosphide as a new anode material for sodium storage
- Polarization-sensitive broadband photodetector using a black phosphorus vertical p-n junction.
- A first-principles study of sodium adsorption and diffusion on phosphorene.
- Recent Advances and Prospects of Cathode Materials for Sodium‐Ion Batteries
- Ball-milled FeP/graphite as a low-cost anode material for the sodium-ion battery
- Recent developments in black phosphorus transistors
- Highly stable sodium storage in 3-D gradational Sb-NiSb-Ni heterostructures
- Superior Stable Self‐Healing SnP3 Anode for Sodium‐Ion Batteries
- The Atomic Distribution in Red and Black Phosphorus and the Crystal Structure of Black Phosphorus
- THE INTERLAYER SPACING OF GRAPHITE
- Red phosphorus-single-walled carbon nanotube composite as a superior anode for sodium ion batteries.
- Semiconducting black phosphorus: synthesis, transport properties and electronic applications.
- Electronic Structure of Black Phosphorus in Tight Binding Approach
- One‐Pot Facile Synthesis of Double‐Shelled SnO2 Yolk‐Shell‐Structured Powders by Continuous Process as Anode Materials for Li‐ion Batteries
- Phosphorus–carbon nanocomposite anodes for lithium-ion and sodium-ion batteries
- Using the cumulative availability curve to assess the threat of mineral depletion: The case of lithium
Cited by
- Structural design of anode materials for sodium-ion batteries
- The State and Challenges of Anode Materials Based on Conversion Reactions for Sodium Storage.
- Carbon and Carbon Hybrid Materials as Anodes for Sodium-Ion Batteries.
- SnP nanocrystals as anode materials for Na-ion batteries
- Strong, persistent superficial oxidation-assisted chemical bonding of black phosphorus with multiwall carbon nanotubes for high-capacity ultradurable storage of lithium and sodium
- Solvent mediated hybrid 2D materials: black phosphorus - graphene heterostructured building blocks assembled for sodium ion batteries.
- Recent Advances in Sodium-Ion Battery Materials
- Sodium-ion batteries: New opportunities beyond energy storage by lithium
- Progress of metal-phosphide electrodes for advanced sodium-ion batteries
- Promise and Challenge of Phosphorus in Science, Technology, and Application
- Amorphous CuSnO3 nanospheres anchored on interconnected carbon networks for use as novel anode materials for high-performance sodium ion batteries
- Electrochemically Exfoliated Phosphorene-Graphene Hybrid for Sodium-Ion Batteries
- Ni2 P Nanoflake Array/Three Dimensional Graphene Architecture as Integrated Free-Standing Anode for Boosting the Sodiation Capability and Stability
- P4Se3 as a new anode material for sodium-ion batteries
- The lithium and sodium storage performances of phosphorus and its hierarchical structure
- Applications of 2D MXenes in energy conversion and storage systems.
- Double conductivity-improved porous Sn/Sn4P3@carbon nanocomposite as high performance anode in Lithium-ion batteries.
- Metallic P3C monolayer as anode for sodium-ion batteries
- Manipulating Local Chemistry of Phosphorus for High-Performance Sodium Ion Battery Anode Applications
- States of thermochemically or electrochemically synthesized NaxPy compounds analyzed by solid state 23Na and 31P nuclear magnetic resonance with theoretical calculation
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