The Intriguing Nature of Fluorine Doping on Li2CuO2 and the Reasons Behind the Inhibition of Oxygen Evolution
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- Type
- article
- Published
- 2020-02-11
- Cited by
- 9
- References
- 25
- OpenAlex
- https://openalex.org/W3006624521
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:214539814
Keywords
Fluorine, Doping, Electrochemistry, Oxygen, Oxygen evolution
References
- Using local softness to reveal oxygen participation in redox processes in cathode materials
- Fluorine-doped LiNi0.5Mn1.5O4 for 5 V cathode materials of lithium-ion battery
- High Field Multinuclear NMR Investigation of the SEI Layer in Lithium Rechargeable Batteries
- Crystal and magnetic structure of Li2CuO2
- Certification of Standard Reference Material 660B
- CuO: X-ray single-crystal structure determination at 196 K and room temperature
- Sulfur anion doping and surface modification with LiNiPO4 of a Li[Co0.1Ni0.15Li0.2Mn0.55]O2 cathode material for Li-ion batteries
- Efficiency of ab-initio total energy calculations for metals and semiconductors using a plane-wave basis set
- Direct Evidence of LiF Formation at Electrode/Electrolyte Interface by 7Li and 19F Double-Resonance Solid-State NMR Spectroscopy
- Structural originations of irreversible capacity loss from highly lithiated copper oxides
- Vibrational Properties of CuO and Cu4O3 from First-Principles Calculations, and Raman and Infrared Spectroscopy
- Synthesis, Structure, and Electrochemical Performance of High Capacity Li2Cu0.5Ni0.5O2 Cathodes
- Comprehensive Study of the CuF2 Conversion Reaction Mechanism in a Lithium Ion Battery
- Conflicting Roles of Anion Doping on the Electrochemical Performance of Li-Ion Battery Cathode Materials
- Controlling Li2CuO2 single phase transition to preserve cathode capacity and cyclability in Li-ion batteries
- Investigating Li2NiO2–Li2CuO2 Solid Solutions as High-Capacity Cathode Materials for Li-Ion Batteries
- Anion Doping: A New Strategy for Developing High‐Performance Perovskite‐Type Cathode Materials of Solid Oxide Fuel Cells
- LiVPO4F1–yOy Tavorite-Type Compositions: Influence of the Concentration of Vanadyl-Type Defects on the Structure and Electrochemical Performance
- High voltage – Improved reversible capacity in Ni+2/+3 modified copper-based cathodes for lithium ion batteries
- High Reversibility of Lattice Oxygen Redox Quantified by Direct Bulk Probes of Both Anionic and Cationic Redox Reactions
Cited by
- Unraveling the effects on lithium-ion cathode performance by cation doping M-Li2CuO2 solid solution samples (M = Mn, Fe and Ni).
- First discernments for NO storage and reduction (NSR) on lithium cuprate (Li2CuO2) at moderate temperatures (100 ≤ T ≤ 400 °C)
- Degradation mechanisms of layered materials (LiCoO2 and Li2CuO2) captured by an EIS-based graphical reconstruction method
- Improving the Structural Reversibility of Linio2 by Incorporation of Cu, an Electrochemical and In-Situ Xrd Study
- Enhanced Cycling Performance of a Li-Excess Li2CuO2 Cathode Additive by Cosubstitution Nanoarchitectonics of Ni and Mn for Lithium-Ion Batteries.
- The influence of Mn-ion doping on electrochemical properties of Li2Cu(1-2x) MnxO2 (x = 0–0.1)
- Advances and Challenges in Li-Excess Cathode Additives for Next-Generation Li Rechargeable Batteries
- Prelithiation Technology for High Energy Density Lithium-Ion Batteries: Design, Progress, Advantages and Challenges
- Improving the structural reversibility of LiNiO2 by incorporation of Cu, an electrochemical and in-situ XRD study
- Selective elemental substitutions of transition metals to modulate the reversibility of Li2NiO2 cathode additives for high-energy lithium-ion batteries
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