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New Technology
Cheap Tubes’ MWCNT Conductive Additive Boosts LFP/NMC Battery Energy Density by 1-4% with Only 20% Carbon Black Loading
Cheap Tubes USA Overview According to Cheap Tubes, multi-walled carbon nanotube (MWCNT) conductive additives demonstrate superior performance in lithium-ion battery LFP and NMC cathodes. MWCNTs form equivalent conductive networks at appr... -
Next-Gen Energy Storage
China’s Used Battery Cell Market Declines in July 2026 Amid Softening Raw Material Prices and Lower Price Acceptance
SMM China Overview China's used battery cell market saw a general decline in July 2026, driven by a broad softening of lithium, nickel, and cobalt prices and reduced acceptance of high prices by downstream players. Ternary and LCO batter... -
Solid-State Batteries
Toyota’s Solid-State Battery Targets 745-Mile Range and Sub-10-Minute Charging for 2028 Lexus EV Debut
EVCUBE.NET USA Overview Toyota plans to debut its all-solid-state battery in luxury Lexus models by 2028, aiming for a 745-mile range and under 10-minute full recharge times. While not yet in production vehicles in 2026, the company targ... -
Next-Gen Energy Storage
Argonne National Laboratory Boosts All-Solid-State Lithium-Sulfur Battery Performance by High-Speed Mixing, Retaining Over 80% Performance After 450 Cycles
CiVL USA Overview Researchers at Argonne National Laboratory discovered that a high-speed mixing technique significantly enhances the performance of all-solid-state lithium-sulfur batteries. By mixing solid electrolyte and cathode materi... -
Next-Gen Energy Storage
Chongqing University Team Develops 2.22 Ah Stable Lithium-Sulfur Pouch Cell with “Electron-Injection Softening Strategy,” Achieving Over 1000 Cycles
EurekAlert! China Overview A research team from Chongqing University has achieved a practical-level, stable lithium-sulfur (Li-S) pouch cell with 2.22 Ah capacity and 389 Wh kg⁻¹ energy density, employing an "electron-injection softening... -
Solid-State Batteries
ACS Paper: Spin-Coated Asymmetric Ultrathin Salt-Rich Composite Polymer Electrolyte Achieves 82.5% Capacity Retention After 500 Cycles in Lithium Metal Batteries
ACS Applied Materials & Interfaces USA Overview This research details a spin-coated asymmetric high-salt polymer electrolyte for solid-state lithium metal batteries, designed for high energy density and enhanced safety. Featuring a PVDF ... -
Solid-State Batteries
AZoM Reports Thiourea Coating Boosts Lithium-Rich Cathode Capacity Retention to 97% After 600 Cycles, Revolutionizing Solid-State Battery Performance
AZoM Unknown Overview Researchers have developed a thiourea-derived coating for lithium-rich manganese oxide (LRMO) cathodes, significantly improving their performance in solid-state batteries. This surface engineering method achieved an... -
Solid-State Batteries
ACS Paper: Li-Al-Si-Zn Alloy Anode Achieves Ultra-Rapid Charging and Extended Life in All-Solid-State Batteries, Retaining 80% Capacity After 2050 Cycles
ACS Sustainable Chemistry & Engineering USA Overview A quaternary Li-Al-Si-Zn (ASZ@Li) alloy anode has been developed, enabling ultra-rapid charging for all-solid-state batteries through a multiphase electron-ion co-conductive network. A... -
Solid-State Batteries
Succinic Anhydride Effectively Suppresses Dendrite Growth in Lithium Metal Anodes, Improving Solid-State Battery Cycle Life
ResearchGate International Overview Succinic Anhydride has been identified as an effective deposition-regulating additive to suppress dendrite formation, a critical challenge for lithium metal anodes. This additive strengthens the solid ... -
Solid-State Batteries
Ultrathin Li3YCl6-Based Coatings Enable High-Areal-Capacity All-Solid-State Batteries with Improved NMC811 Cathode Cycling Performance
Chemistry of Materials (ACS Publications) USA Overview Researchers synthesized nanometer-thick Li3YCl6-based coatings on NMC811 cathodes via liquid-phase deposition and low-temperature annealing to suppress interfacial side reactions wit...