Solid Electrolyte– tag –
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Solid-State Batteries
Uniaxial Press Critical for LLZO Solid Electrolyte Green Pellet Production, Lays Foundation for High-Performance Solid-State Batteries
Kintek Press Unknown Overview The crucial role of uniaxial pressing in manufacturing garnet-type Li7La3Zr2O12 (LLZO) solid electrolyte 'green pellets' has been emphasized. Uniaxial pressing is essential for establishing uniform density g... -
Solid-State Batteries
Lactone Electrolytes for 4.5 V Sodium-Ion Batteries Show High-Voltage Advantages, Yet Face Ionic Conductivity and SEI Stability Challenges
ACS Energy Letters Unknown Overview Lactone electrolytes, widely used in solid polymer electrolytes for sodium-ion batteries, show clear advantages in high-voltage operation but are noted for low ionic conductivity and forming unstable s... -
Solid-State Batteries
rGO Enhances Surface Stability of LATP Composite Solid Electrolytes, Achieving 125 mAh/g in Li-LFP Full Cells
ACS Publications Unknown Overview Coating Li1.3Al0.3Ti1.7(PO4)3 (LATP) solid electrolytes with reduced graphene oxide (rGO) significantly enhanced the surface stability of the composite solid electrolyte. This technology effectively prev... -
Solid-State Batteries
Sulfide All-Solid-State Batteries Achieve 1.54 mS/cm Ionic Conductivity, 120 mAh/g Initial Capacity, and 97% Retention over 50 Cycles via Three-Stage Pressure Optimization
IEST Instrument Unknown Overview Research by Yan et al. (Journal of Colloid and Interface Science, 2026) presented a three-stage pressure optimization protocol for assembling sulfide all-solid-state batteries: electrolyte pre-pressing (3... -
Solid-State Batteries
LiBF₄ Doping Stabilizes Sulfohalide Electrolyte Interfaces, Enabling Over 800 Hours of Stable Lithium Metal Battery Operation
Molecules Unknown Overview A technology has been developed to suppress lithium dendrite growth and stabilize electrode interfaces by incorporating LiBF₄ into a sulfohalide (Li₃SCl) framework. This LSC@BF solid electrolyte maintained a hi... -
Solid-State Batteries
Imperial College London & University of Adelaide Achieve 85%+ Fast Charging in 6 Minutes for Li-Ion Batteries via Interfacial Catalysis
Electronics360 - GlobalSpec UK Overview Researchers from Imperial College London and the University of Adelaide have developed a new battery chemistry, unveiling a fast-charging lithium-ion battery capable of maintaining over 85% charge ... -
Solid-State Batteries
CATL’s Sulfide All-Solid-State Battery Achieves Liquid Electrolyte-Level Ionic Conductivity at Room Temperature, Stable from -40°C to 100°C with 6C Charging
YouTube China Overview CATL's sulfide all-solid-state battery (argyrodite Li₆PS₅Cl) has reportedly achieved ionic conductivity comparable to liquid electrolytes (10-25 mS/cm) at room temperature. This battery is also stated to operate st... -
Solid-State Batteries
Korean Team Triples Sulfide All-Solid-State Battery Lifespan, Achieves 2500 Hours Stable Operation with Elastic Ion-Conducting Polymer
BigGo Finance South Korea Overview A joint research team from Korea Research Institute of Chemical Technology, Yonsei University, and Sungkyunkwan University developed a groundbreaking technology to resolve crack issues in sulfide all-so... -
Solid-State Batteries
Disordered Lithium Sublattice in Garnet-Type LLZO Achieves 10⁻³ S/cm Room-Temperature Ionic Conductivity
European Journal of Chemistry Unknown Overview First-principles calculations (DFT and AIMD) demonstrated that intentional disordering of the lithium sublattice in the cubic phase of garnet-type Li7La3Zr2O12 (LLZO) solid electrolyte signi... -
Solid-State Batteries
Ti-Doping Improves Densification and Ionic Conductivity of LLZO Solid Electrolytes, Stabilizing Cubic Phase
arXiv Unknown Overview Research explored titanium (Ti) doping in garnet-type Li7La3Zr2O12 (LLZO) solid electrolytes to enhance lithium-ion transport and structural stability. Ti-doping was found to improve the bulk density of LLZO and pr...