Lithium-ion Battery– tag –
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Next-Gen Energy Storage
Dual-Functional Li6MnO4 Synergistically Boosts Li-ion Battery Energy Density and Cycle Life: Pouch Cells Achieve 95.7% Capacity Retention
ACS Sustainable Chemistry & Engineering USA Overview Research demonstrates Li6MnO4 as a highly promising dual-functional prelithiation material, synergistically enhancing both energy density and cycle life in lithium-ion batteries. Pouch... -
Next-Gen Energy Storage
Arizona to Deploy Over 7.7 GW Total BESS Capacity by 2026, Accelerating Grid Stabilization with Renewable Energy Integration
Solar Topps USA Overview Arizona is rapidly emerging as a leading state in utility-scale Battery Energy Storage System (BESS) deployment, with approximately 3,900 MW currently operational and an additional 3,807 MW slated to come online ... -
Next-Gen Energy Storage
Innovative Solutions Overcome Silicon Anode Volume Expansion: SiOx, Si-C Composites, Conductive Networks, Flexible Binders, and FEC Additives Advance Li-ion Batteries
Xnergy Materials USA Overview Comprehensive solutions have been presented to address the critical volume expansion issue in silicon anodes for lithium-ion batteries. Key strategies include the adoption of silicon oxide (SiOx) and silicon... -
Next-Gen Energy Storage
Rare-Earth Triflate Additive Revolutionizes Anode-Free Lithium–Sulfur Batteries, Achieving 5.5 mAh cm^-2 High Areal Capacity
Academic research Unknown Overview Academic research demonstrates that a rare-earth triflate (Nd(OTf)3) electrolyte additive significantly boosts anode-free lithium–sulfur (Li-S) battery performance. Nd(OTf)3 acts as a dual-function agen... -
Next-Gen Energy Storage
US Battery Storage Capacity Reaches 14.96 GW / 24.6 GWh in Q1 2026; ERCOT and CAISO Lead, PJM Revenue Soars Post-Regulation Redesign
Modo Energy USA Overview The US added 1.1 GW of battery storage across 20 new projects in Q1 2026, bringing total operational capacity to 14.96 GW with 24.6 GWh of energy capacity. ERCOT and CAISO collectively host approximately two-thir... -
Next-Gen Energy Storage
Precision Chemical Purity and Advanced Process Control Drive Next-Gen Li-ion Battery Performance with High-Capacity Anodes and Dry Electrode Tech
Spectroscopy Online USA Overview Rigorous analytical chemistry and process control are crucial for overcoming the safety, performance, cost, and sustainability challenges of lithium-ion batteries (LIBs). Key advancements include the adop... -
New Technology
Forge Nano Scales Advanced Materials Manufacturing with Atomic Armor ALD Technology, Bridging Science and Commercial Production for Next-Gen Batteries, Semiconductors, and Electronics
TipRanks.com USA Overview Forge Nano emphasizes its Atomic Armor atomic layer deposition (ALD) technology as a key competitive driver for next-generation batteries, semiconductors, and advanced electronics manufacturing. The company focu... -
New Technology
Parker Lord Develops CoolTherm SF-1000, a Low-Cost Liquid-Dispensed Solution to Mitigate Thermal Runaway Propagation in EV Cylindrical Battery Packs
E-Mobility Engineering USA Overview Parker Hannifin has introduced CoolTherm SF-1000, a liquid-dispensed silicone foam material designed to mitigate thermal runaway propagation in cylindrical lithium-ion cell battery packs. This non-expa... -
New Technology
UChicago’s “ElectrolyteGPT” Unleashes AI-Powered Autonomous Generation of Battery Electrolyte Formulations
UChicago News USA Overview Researchers at the University of Chicago Pritzker School of Molecular Engineering have developed "ElectrolyteGPT," an AI model capable of generating entire battery electrolyte compositions autonomously. This AI... -
New Technology
Citrine Platform and AI Significantly Reduce Graphite Anode Failure Rate via Iterative Experimental Feedback
arXiv Unknown Overview This research demonstrates that the Citrine Platform, utilizing an AI-guided iterative closed-loop workflow, successfully achieved the design and optimization of graphite-based anode formulations, leading to a sign...