Solid Electrolyte– tag –
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Solid-State Batteries
Research Unravels Anode Compatibility Challenges in Sulfide Solid-State Electrolytes, Achieves 401.1 Wh/kg High-Energy Density Pouch Cell
ResearchGate Unknown Overview Research highlights significant challenges regarding the chemical and electrochemical instability of sulfide solid-state electrolytes (SSEs) when in contact with reductive anodes. Concurrently, another study... -
Solid-State Batteries
Finnish Donut Lab Unveils 400 Wh/kg Solid-State EV Battery with 5-Minute Charge, Slated for 2026 Verge Motorcycle Debut
The Robotics Media Finland Overview Finnish firm Donut Lab has announced a production-ready all-solid-state battery for electric vehicles (EVs) that boasts a gravimetric energy density of 400 Wh/kg and a full charge time of just 5 minute... -
Solid-State Batteries
Electropages July 2026 Review: Syensqo & Axens Form Argylium for Sulfide SSE Industrialization; Ilika Ships 10Ah Samples; Donut Lab’s 400Wh/kg SSB to Power Verge Motorcycles
Electropages UK Overview The Electropages July 2026 review highlights several advances in solid-state battery commercialization. Syensqo and Axens formed Argylium to industrialize sulfide solid-state electrolytes. UK's Ilika commenced sh... -
Solid-State Batteries
Pulsedeon Secures €700K to Industrialize Next-Gen Solid-State Battery Manufacturing, Launches Global Sample Program
Pulsedeon Finland Overview Finnish deep-tech firm Pulsedeon Oy has secured €700,000 in funding to significantly scale its advanced manufacturing platform for next-generation solid-state batteries. Leveraging proprietary pulsed laser depo... -
Solid-State Batteries
Toyota Achieves 1000-Mile EV Range, 5-Minute Charging with Solid-State Battery, Targeting Production by 2027
Unnamed source Japan Overview Toyota has announced a significant breakthrough in solid-state battery technology, enabling electric vehicles (EVs) to achieve a range of 1,600 km (approximately 1,000 miles) and a rapid 5-minute charging ti... -
Solid-State Batteries
Strategies for Mitigating Volume Strain in Silicon-Based Anodes: Carbon and High-Modulus Additives Enhance Battery Stability
The Royal Society of Chemistry (The Journal of Physical Chemistry C) UK Overview High-capacity anode materials, particularly silicon-based ones, achieve high specific capacity through alloying and conversion reactions but are plagued by ... -
Solid-State Batteries
MOF-Modified Solid Electrolyte Optimizes Interfacial Ion Transport Pathways: Achieving 3.04 × 10⁻⁴ S cm⁻¹ Ionic Conductivity at 60°C
ACS Publications (The Journal of Physical Chemistry C) USA Overview A new design approach utilizing metal-organic framework (MOF) ZIF-8 as an interfacial bridge effectively resolves LATP aggregation and interfacial compatibility issues w... -
Solid-State Batteries
Degradable Yet Fireproof: Trace Multifunctional Additive Enables Highly Safe Polymer Composite Electrolyte, Resolving Environmental Challenges for Li-Metal Batteries
The Royal Society of Chemistry (Chemical Communications) UK Overview A truly safe polymer electrolyte system has been realized by incorporating a trace multifunctional flame retardant into an inherently degradable polycaprolactone-based ... -
Solid-State Batteries
Synergistic Integration Achieves High Ionic Conductivity and Mechanical Strength: PIL/MOF Composite Solid Electrolyte Boosts Performance of Li-Metal Batteries
PubMed (Small Methods) Unknown Overview A novel composite poly(ionic liquid)-based solid electrolyte (CPLE) was designed through the synergistic integration of poly(ionic liquid) (PIL) and MOF-5, achieving high-performance all-solid-stat... -
Solid-State Batteries
Oxygen Introduction in Sulfide Solid Electrolytes: Stabilizing Interfaces While Maintaining Lithium Ion Conduction for Next-Gen Batteries
EurekAlert! USA Overview New research demonstrates that carefully introducing oxygen into sulfide-based solid electrolytes can stabilize unstable interfaces while preserving high lithium ion conductivity. By using lithium sulfate (Li₂SO₄...