Tin Phosphide as a Promising Anode Material for Na‐Ion Batteries
Explore this paper's citation graph
Summary
Sn4 P3 is introduced for the first time as an anode material for Na-ion batteries and shows very stable cycle performance with negligible capa-city fading over 100 cycles, which is attributed to the confinement effect of Sn nanocrystallites in the amorphous phosphorus matrix during cycling.
- Type
- article
- Published
- 2014-06-01
- Cited by
- 367
- References
- 29
- OpenAlex
- https://openalex.org/W2128751468
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:30903480
Keywords
Phosphide, Materials science, Anode, Tin, Amorphous solid
References
- Cu3P Binary Phosphide: Synthesis via a Wet Mechanochemical Method and Electrochemical Behavior as Negative Electrode Material for Lithium‐Ion Batteries
- High capacity, reversible alloying reactions in SnSb/C nanocomposites for Na-ion battery applications.
- FeP: Another Attractive Anode for the Li-Ion Battery Enlisting a Reversible Two-Step Insertion/Conversion Process
- Update on Na-based battery materials. A growing research path
- Charge carriers in rechargeable batteries: Na ions vs. Li ions
- Better cycling performances of bulk Sb in Na-ion batteries compared to Li-ion systems: an unexpected electrochemical mechanism.
- Reaction Mechanism of Tin Phosphide Anode by Mechanochemical Method for Lithium Secondary Batteries
- Na-ion batteries, recent advances and present challenges to become low cost energy storage systems
- An Amorphous Red Phosphorus/Carbon Composite as a Promising Anode Material for Sodium Ion Batteries
- High capacity Na-storage and superior cyclability of nanocomposite Sb/C anode for Na-ion batteries.
- Tin anode for sodium-ion batteries using natural wood fiber as a mechanical buffer and electrolyte reservoir.
- Facile synthesis and long cycle life of SnSb as negative electrode material for Na-ion batteries
- Reversible Insertion of Sodium in Tin
- Sodium and sodium-ion energy storage batteries
- On the Mechanism of the Electrochemical Reaction of Tin Phosphide with Lithium
- Functional electrolytes enhancing electrochemical performance of Sn–Fe–P alloy as anode for lithium-ion batteries
- Comparison of the Electrochemical Lithiation/Delitiation Mechanisms of FePx (x = 1, 2, 4) Based Electrodes in Li-Ion Batteries
- Sodium‐Ion Batteries
- A Reversible Solid-State Crystalline Transformation in a Metal Phosphide Induced by Redox Chemistry
- Redox reaction of Sn-polyacrylate electrodes in aprotic Na cell
Cited by
- Hierarchical Vanadium Pentoxide Spheres as High-Performance Anode Materials for Sodium-Ion Batteries.
- ZnSb/C composite anode in additive free electrolyte for sodium ion batteries
- SnSe/carbon nanocomposite synthesized by high energy ball milling as an anode material for sodium-ion and lithium-ion batteries
- Cobalt phosphide as a new anode material for sodium storage
- Recent Advances and Prospects of Cathode Materials for Sodium‐Ion Batteries
- Layered phosphorus-like GeP5: a promising anode candidate with high initial coulombic efficiency and large capacity for lithium ion batteries
- Ball-milled FeP/graphite as a low-cost anode material for the sodium-ion battery
- Improvement of the sodiation/de-sodiation stability of Sn(C) by electrochemically inactive Na2Se
- Polypyrrole-coated manganese dioxide with multiscale architectures for ultrahigh capacity energy storage
- Superior Stable Self‐Healing SnP3 Anode for Sodium‐Ion Batteries
- Update on anode materials for Na-ion batteries
- 3D Porous γ‐Fe2O3@C Nanocomposite as High‐Performance Anode Material of Na‐Ion Batteries
- Electrode Nanostructures in Lithium‐Based Batteries
- Recent developments in electrode materials for sodium-ion batteries
- Flexible and Binder-Free Electrodes of Sb/rGO and Na3V2(PO4)3/rGO Nanocomposites for Sodium-Ion Batteries.
- Interfacial architectures based on a binary additive combination for high-performance Sn4P3 anodes in sodium-ion batteries
- Few‐Layered SnS2 on Few‐Layered Reduced Graphene Oxide as Na‐Ion Battery Anode with Ultralong Cycle Life and Superior Rate Capability
- Phosphorus‐Graphene Nanosheet Hybrids as Lithium‐Ion Anode with Exceptional High‐Temperature Cycling Stability
- Cathodically induced antimony for rechargeable Li-ion and Na-ion batteries: The influences of hexagonal and amorphous phase
- Sodium‐Ion Storage in Pyroprotein‐Based Carbon Nanoplates
Related papers
- بررسی و مطالعه سختی و رفتار سایشی سه پوشش TiN، TiCN و TiN-TiCN-TiN اعمال شده بر روی فولاد ابزار D2 به روش تبخیر پرتو الکترونی EB-PVD
- TiN의 충진처리가 확산방지막 특성에 미치는 영향(I) : Al/TiN/Si 구조
- Electron Transfer Studies of TIN(IV)/TIN(II) in Acid Media
- HCD 이온플레이팅 장치 제작 및 Stainless Steel 위에 TiN 박막의 미세색상변화에 따른 XPS분석
- On the possibility to grow thin tin films with unusual tin structures from the vapour
- VARIATION IN TIN COATING WEIGHT OF TIN PLATE FOR A FOOD CONTAINER
- Compounds of Germanium and Tin, 16. A Tetraaryldistannene with a Long Tin—Tin Multiple Bond and Differing Environments at the Tin Atoms†
- TiN 박막을 이용한 2층 무반사 코팅의 설계 및 층착
- W-TiN 복층 전극 소자에서 TiN 박막 형성 조건에 따른 특성 분석