A closed‐loop direct recycling route for Prussian White sodium‐ion battery cathodes is demonstrated. Ice‐stripped scrap and end‐of‐life electrodes are regenerated via low‐temperature aqueous resodiation (80°C), restoring sodium content, Fe2+ redox chemistry, and structural integrity.
Subha Samanta +8 more
wiley +1 more source
Structure, Electrochemistry, and Phase Evolution of Al-Substituted Na<sub>2/3</sub>[Ni<sub>1/3‑y</sub>Mn<sub>2/3‑z</sub>Al <sub><i>y</i>+<i>z</i></sub> ]O<sub>2</sub> as a Sodium-Ion Battery Cathode Material. [PDF]
Pacileo AT, Deegan P, Liu H.
europepmc +1 more source
Amorphous SnP3 undergoes homogeneous solid‐solution sodiation, delivering exceptional cycling stability and volumetric capacity. In contrast, crystalline Sn4P3 phase‐separates into Na‐Sn and Na‐P domains, causing rapid capacity decay and severe pulverization.
Yixiang Zhang +10 more
wiley +1 more source
Distorted 2H/1T MoS<sub>2</sub> nanostructures with improved field emission and sodium-ion battery performance. [PDF]
Chothe U +5 more
europepmc +1 more source
Cycling Performance of Sodium‐Metal Chloride Battery Cells and Modules Based on Iron and Zinc
High‐utilization sodium–metal chloride cells with a mixed‐metal Fe, Zn, NaCl cathode enable efficient high‐temperature cycling (300°C) while reducing cost and environmental impact. Near‐theoretical capacity and high efficiency are achieved in single cells.
William Nash +10 more
wiley +1 more source
An Ultra-Stable, High-Energy and Wide-Temperature-Range Aqueous Alkaline Sodium-Ion Battery with the Microporous C<sub>4</sub>N/rGO Anode. [PDF]
Li M +10 more
europepmc +1 more source
Layered titanates with expanded interlayer galleries reveal how nanoconfinement and electrolyte solvation control Na+ storage kinetics. In diglyme electrolyte, solvent co‐intercalation and strongly reduced interfacial impedance enable increasingly capacitor‐like behavior with increasing interlayer spacing, whereas carbonate electrolytes form resistive ...
Yoga Trianzar Malik +11 more
wiley +1 more source
Layered Cathode with Ultralow Strain Empowers Rapid-Charging and Slow-Discharging Capability in Sodium Ion Battery. [PDF]
Yang M +11 more
europepmc +1 more source
Tracking Dynamic Sulfur Electrochemistry by Operando Techniques in Alkali Metal‐Sulfur Batteries
Dynamic sulfur electrochemistry in alkali metal‐sulfur batteries is tracked through operando spectroscopy, scattering, imaging, and modelling. This Review connects sulfur reaction pathways, polysulfide transport, electrolyte/interphase evolution, anode chemistry, and quantitative mechanistic analysis across Li‐S, Na‐S, and K‐S batteries, providing ...
Fangli Zhang +3 more
wiley +1 more source

