Zirconium and Graphene Team Up to Rescue the Battery Cathode That Cracks Under Pressure
Researchers in Shanghai report that zirconium doping combined with few-layer graphene functionalization lets NCM811 cathodes deliver high capacity and retain ...
Researchers in Shanghai report that zirconium doping combined with few-layer graphene functionalization lets NCM811 cathodes deliver high capacity and retain ...
Researchers have developed an adaptive low-frequency bidirectional pulse preheating method that rapidly warms lithium-ion batteries in extreme cold without causing ...
A systematic kinetic benchmark reveals that commercial sodium-ion cells occupy a distinctly different and more dispersed dynamic parameter space than ...
A new review in Discover Electrochemistry details how carbon nanostructures, conducting polymers, metal oxides, MXenes, phosphorene and borophene are overcoming ...
A descriptor-guided multi-component doping strategy has produced cobalt-free, nickel-rich cathodes that combine ultrafast charging, long cycle life and strong low-temperature ...
New research shows that separator porosity governs lithium-ion battery power output only when paired with slow-diffusing electrode materials, revealing a ...
A simulation study of German battery cell production shows that methodological choices in the EU's carbon footprint rules can shift ...
Researchers have converted cobalt-rich zinc refining residue directly into high-performance NCM811 battery cathodes using a separation-free strategy that matches the ...
A new dynamic material flow model shows that electric vehicle battery replacement in British Columbia could cut new vehicle demand ...
A comprehensive review reveals how doping, defect engineering, and phase stabilization across four electrolyte families are shaping the future of ...
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© 2025 Scienmag - Science Magazine