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Next-Gen Energy Storage
Lithium-Sulfur Batteries for Drones Target 2,600 Wh/kg Theoretical Density, with LGES Achieving 400-500 Wh/kg by Overcoming Polysulfide Challenges
PatSnap Eureka Global Overview Lithium-sulfur (Li-S) batteries are being developed for drone applications to overcome flight endurance limitations, offering a theoretical energy density of up to 2,600 Wh/kg. Companies like LG Energy Solu... -
Next-Gen Energy Storage
Sodium-Ion Batteries Enter Mass Production by 2026, Offering Superior Cost and Supply Chain Advantages for EV, Grid, and Consumer Applications with Hard Carbon Anodes
Xnergy Materials USA Overview By 2026, sodium-ion batteries are in mass production for various applications, including EVs, grid storage, and consumer power stations, driven by their cost and supply chain benefits over lithium-ion. Utili... -
Next-Gen Energy Storage
Sodium-Ion Batteries Emerge as Mainstream Technology at SNEC 2026, Signaling Dual-Chemistry Era with LFP
pv magazine Global Global Overview At SNEC 2026, sodium-ion battery technology was recognized as a parallel pathway, not a niche alternative, for energy storage, highlighting its potential in cold climates, long-cycle applications, high-... -
Solid-State Batteries
Novel Halide Solid Electrolyte Achieves Record 25 mS/cm Ionic Conductivity at Room Temperature
Nature Energy Global Overview Researchers have published a landmark study in Nature Energy on a novel halide solid electrolyte, exhibiting an unprecedented ionic conductivity of 25 mS/cm at room temperature. This material also demonstrat... -
Solid-State Batteries
High-Performance All-Solid-State Lithium/Sulfur Batteries Achieve 1080 mAh/g Capacity Retention After 50 Cycles with Br-Doped Lithium Argyrodite Electrolyte
ResearchGate Unknown Overview Research from ResearchGate demonstrates the potential of high-performance all-solid-state lithium/sulfur batteries utilizing Br-doped lithium argyrodite electrolytes. These batteries achieved a maximum initi... -
Next-Gen Energy Storage
Sodium-Ion Battery Costs Projected to Drop to $40-55/kWh by 2028, Approaching LFP Energy Density for Stationary Storage
JM Batteries Global Overview A new report forecasts sodium-ion battery costs for stationary storage will decrease to $40-55/kWh by 2028, significantly enhancing their competitiveness. Current cell energy densities of 150-175 Wh/kg are ra... -
Next-Gen Energy Storage
SolaX Power Identifies LFP Batteries and CATL’s 9MWh TENER Stack as 2026 Global BESS Market Leaders
SolaX Power China Overview SolaX Power reports that Lithium Iron Phosphate (LFP) batteries remain the top choice for Battery Energy Storage Systems (BESS) in 2026 due to their safety and extended lifespan. Global BESS capacity reached 10... -
Next-Gen Energy Storage
Review Reveals Next-Generation Cathode Materials Beyond LFP/LMFP for High-Energy Density Batteries Exceeding Li-Ion Limits
Advanced Materials Germany Overview A comprehensive review has been published on next-generation cathode materials designed to achieve energy densities beyond the limits of current lithium-ion batteries. The paper specifically focuses on... -
Next-Gen Energy Storage
Environmentally Friendly Direct Lithium Recovery from Spent EV Batteries Achieves High Yields and Reduced Environmental Impact
Green Chemistry UK Overview A novel, eco-friendly direct recycling technology for lithium recovery from spent electric vehicle (EV) batteries has been developed, demonstrating higher recovery rates and significantly lower environmental i... -
Next-Gen Energy Storage
LFP Battery Costs to Enter New Phase in 2026: Supply Stability and Partnerships Crucial Alongside Raw Material Prices
BOSA Energy China Overview According to BOSA Energy's analysis, 2026 marks a new phase for LFP (Lithium Iron Phosphate) battery costs, where cost management, supply chain stability, and partnership quality become as critical as raw mater...