Dendrite– tag –
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Solid-State Batteries
AgCl Addition Boosts Argyrodite Solid Electrolyte Performance, Achieving High Ionic Conductivity and Suppressed Dendrite Growth for All-Solid-State Batteries
Journal of Materials Chemistry A (RSC Publishing) Unknown Overview A new dual-functional strategy incorporating AgCl into argyrodite solid electrolytes significantly enhances ionic conductivity and lithium metal compatibility. During syn... -
Solid-State Batteries
Dual-Engineering Strategy Suppresses Lithium Dendrite Growth in Solid-State Batteries with PVDF-Modified Argyrodite Electrolytes and ALD Interface Stabilization
Vertex AI Search Unknown Overview A dual-engineering strategy combining bulk modification with polyvinylidene fluoride (PVDF) and atomic layer deposition (ALD) interfacial stabilization has been developed to effectively suppress lithium ... -
Next-Gen Energy Storage
Anode-Free Lithium Metal Batteries Advance Towards Maximum Energy Density, Facing Dendrite Formation and Cycle Life Challenges
Nano Energy Netherlands Overview A review summarizes recent advances in anode-free lithium metal batteries, reaffirming their immense potential to maximize energy density. However, critical challenges persist, particularly dendrite forma... -
Solid-State Batteries
IMLB 2026: Advances in Solid-State Battery Electrolytes Achieve Enhanced Ionic Conductivity and Stability
IMLB Meeting International Overview IMLB 2026 presentations showcased significant progress in solid-state battery technology, including improved ionic conductivity and interface stability in sulfide argyrodite electrolytes via an anneali... -
Solid-State Batteries
Solid-State Batteries for Robotics: Highlighting >400 Wh/kg Energy Density and Diverse Solid Electrolyte Applications
Frontiers in Batteries and Electrochemistry International Overview A new academic paper explores the significant potential of solid-state batteries in robotics, projecting energy densities exceeding 400 Wh/kg with lithium metal anodes. V... -
Next-Gen Energy Storage
KAIST/Korea University Develops ‘Interfacial Instability’ Control Technology Solving Dendrite Growth in Lithium Metal Batteries, Enabling Stable High-Current Fast Charging
Tech Briefs South Korea Overview A Korean research team from KAIST and Korea University has developed a breakthrough technology to resolve "interfacial instability" in lithium-metal batteries, which causes dendrite growth and reduces bat... -
Solid-State Batteries
Researchers Develop New Polymer Electrolyte Enabling Safer, High-Voltage Lithium Metal Batteries to Function from -40°C to 55°C
EurekAlert! Unknown Overview Researchers have developed a novel polymer electrolyte that allows lithium metal batteries to operate safely at high voltages and across extreme temperatures, from -40°C to 55°C. This material directly addres... -
Solid-State Batteries
PVDC-Modified PVDF-HFP Electrolyte Achieves Over 3000 Hours Stable Cycling and High Capacity Retention in All-Solid-State Lithium Metal Batteries
ACS Applied Materials & Interfaces (Journal) Unknown Overview Research on a molecularly designed PVDF-HFP electrolyte modified with PVDC (PH-PVDC SPE) for high-performance all-solid-state lithium metal batteries has been published. The o... -
Solid-State Batteries
Thiophene-Enabled ‘Intelligent’ Interface Stabilizes Lithium Metal Batteries for Fast Charging and Extended Lifespan
Tech Briefs (KAIST研究を引用) South Korea Overview Researchers from KAIST and Korea University have developed a novel approach to stabilize lithium metal batteries by incorporating thiophene into the electrolyte. This creates an 'intelli... -
Solid-State Batteries
Self-Healing Polymer Electrolyte Achieves Over 6000 Hours Ultra-Long Lifespan in All-Solid-State Lithium Metal Batteries, Successfully Suppressing Dendrite Growth
ACS Applied Energy Materials (Journal) Unknown Overview A research report describes a polyether-urethane-based self-healing solid polymer electrolyte (SPE) incorporating disulfide bonds and hydrogen bonds, achieving an impressive symmetr...