Improved Lifetime of Na-Ion Batteries With a Water-Scavenging Electrolyte Additive (original) (raw)
Sodium-Ion Batteries: Exploration of Electrolyte Materials
Zhiran OUYANG
Highlights in Science, Engineering and Technology
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Update on Na-based battery materials. A growing research path
Verónica Palomares
Energy & Environmental Science, 2013
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A sodium-ion battery exploiting layered oxide cathode, graphite anode and glyme-based electrolyte
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Journal of Power Sources, 2016
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Layered Oxide Material as a Highly Stable Na-ion Source and Sink for Investigation of Sodium-ion Battery Materials
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Recent Advances in New-Generation Electrolytes for Sodium-Ion Batteries
ozan toprakci
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Life cycle assessment of sodium-ion batteries
Stefano Passerini
Energy & Environmental Science, 2016
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High-Performance Layered Oxides for Sodium-Ion Batteries Achieved through Combined Aluminum Substitution and Surface Treatment
Radostina Stoyanova
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Sodium-Ion Battery Materials and Electrochemical Properties Reviewed
Kudakwashe Chayambuka
Advanced Energy Materials, 2018
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State-of-the-Art Electrode Materials for Sodium-Ion Batteries
Alain Mauger
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Computational insights into the effect of carbon structures at the atomic level for non-aqueous sodium-oxygen batteries
Maochun WU
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Synergistic Role of Electrolyte and Binder for Enhanced Electrochemical Storage for Sodium-Ion Battery
Rashmi Chandrabhan Shende
ACS Omega, 2018
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Electrolytes and Interphases in Sodium‐Based Rechargeable Batteries: Recent Advances and Perspectives
Teófilo Rojo Aparicio
Advanced Energy Materials, 2020
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Fundamentals and perspectives of electrolyte additives for non-aqueous Na-ion batteries
Linqin Mu, Energy Materials
Energy Materials, 2023
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Current and future sodium-ion battery research
Simon Engelke
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Electrolyte additives for room temperature sodium-based rechargeable batteries
Ismael Gracia
Chemistry, an Asian journal, 2018
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Electrochemical stability of non-aqueous electrolytes for sodium-ion batteries and their compatibility with Na0.7CoO2
AMRTHA BHIDE
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The role of specific and active surface areas in optimizing hard carbon irreversible capacity loss in sodium ion batteries
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A review of hard carbon anode materials for sodium-ion batteries and their environmental assessment
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Na-ion batteries, recent advances and present challenges to become low cost energy storage systems
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Designing high-capacity cathode materials for sodium-ion batteries
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Review and New Perspectives on Non-Layered Manganese Compounds as Electrode Material for Sodium-Ion Batteries
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Hard carbons for sodium-ion batteries: Structure, analysis, sustainability, and electrochemistry
Stefano Passerini
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High-performing All-solid-state Sodium-ion Batteries Enabled by the Presodiation of Hard Carbon
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Elizabeth Lofano
Advanced Energy Materials, 2018
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Investigation of sodium content on the electrochemical performance of the Nax(Fe0.35Mn0.35Co0.3)O2 (x = 0.5, 0.6, 0.7, 0.8, 0.9) for sodium-ion batteries
Davut UZUN
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On the Electrochemical Properties of Carbon-Coated NaCrO2 for Na-Ion Batteries
Maziar Ashuri
Batteries, 2023
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Electrochemical formation protocols for maximising the life-time of a sodium ion battery
Emma Kendrick
Chemical Communications, 2020
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A Stable Cathode-Solid Electrolyte Composite for Long-Cycle-Life, High Voltage Solid-State Sodium-ion Batteries
GUY VERBIST
2020
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Sodium and Sodium-Ion Batteries: 50 Years of Research
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Advanced Energy Materials, 2018
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Engineering optimization approach of nonaqueous electrolyte for sodium ion battery with long cycle life and safety
Benny Suherman
Green Energy & Environment, 2020
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Critical Role of Crystal Water for a Layered Cathode Material in Sodium Ion Batteries
Doron Aurbach
Chemistry of Materials, 2015
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Artificial cathode electrolyte interphase by functional additives toward long-life sodium-ion batteries
Hee-Dae Lim
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Study of the Most Relevant Aspects Related to Hard Carbons as Anode Materials for Na-ion Batteries, Compared with Li-ion Systems
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