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News
The Slow Drain: Tiny Electronic Currents Threaten Solid-State Battery
8+ hour, 7+ min ago (583+ words) Solid-state batteries have been heralded as the next great leap in energy storage, promising higher energy densities, improved safety and longer lifetimes than the lithium-ion cells that power everything from smartphones to electric vehicles....
Chloride-Rich Electrolyte Powers a High-Voltage Lithium–Sulfur Battery
8+ hour, 48+ min ago (564+ words) Rechargeable lithium–sulfur batteries have long been heralded as one of the most promising routes beyond the limits of conventional lithium-ion technology. Sulfur is abundant, inexpensive and capable in principle of storing enormous quantities of energy per unit mass....
Halogen Chemistry Lifts Sulfur Batteries to a Higher Voltage
10+ hour, 16+ min ago (623+ words) Lithium-sulfur batteries have spent decades promising an energy-storage revolution that never quite arrived. On paper, the chemistry is extraordinary: sulfur is abundant, cheap, and capable in principle of storing several times more energy per kilogram than the intercalation cathodes used…...
Paper bags and cardboard boxes normally headed for the trash were carbonized into anodes for lithium-ion batteries, and the resulting electrodes survived 1,200 charge cycles — roughly twice the durability of anodes used in current phone batteries
14+ hour, 18+ min ago (441+ words) By Science Blog Editorial Team Published September 12, 2026 · How we edit A paper bag that carried someone’s lunch on Tuesday has a plausible future inside a phone. Researchers at NTU Singapore have worked out how to bake kraft paper, the brown…...
Unlocking the Microscopic Origins of Dendrite Formation in Solid-State Batteries
20+ hour, 28+ min ago (378+ words) Lithium metal anodes offer a theoretical energy density nearly double that of conventional graphite anodes—454 Wh kg?¹ compared to 314 Wh kg?¹ at the cell level when paired with lithium nickel cobalt aluminum oxide cathode. Sep 12 2026 Lithium metal anodes offer a…...
Graphene Oxide and Polymer Pairing Paves Way for Dendrite-Free Solid-State
21+ hour, 54+ min ago (854+ words) Solid-state batteries have long been heralded as the holy grail of energy storage, promising electric vehicles that drive farther, charge faster and, crucially, catch fire far less often. Yet the materials at the heart of this revolution have stubbornly refused…...
Stress level: what hurts? [The Battery Cycle #7 | 2026 RELEASE]
2+ day, 13+ hour ago (399+ words) Battery aging is driven less by time and cycles than by stress. How temperature, SoC and charging behavior combine determines degradation speed—and small operational changes can dramatically improve longevity The previous article was dedicated to (one prominent) effect of…...
Novacium and Tokai COBEX collaborate to evaluate an anode material solution for lithium-ion batteries
2+ day, 11+ hour ago (244+ words) September 10, 2026 by CM Staff MONTREAL — HPQ Silicon Inc. and its strategic partner, NOVACIUM SAS, a French deep-tech company specializing in materials for energy applications, announced the launch of exploratory work with Tokai COBEX Savoie, the French entity of Tokai COBEX....
Dual‑ion co‑storage via solvation structure tuning toward ultrafast and durable zinc‑organic batteries
2+ day, 7+ hour ago (627+ words) Why This Electrolyte Matters KCl is introduced into a 2 M ZnCl2 aqueous electrolyte. The high concentration of KCl not only provides additional Cl⁻ ions but also fundamentally reorganizes the Zn2+ solvation environment and the hydrogen-bonding network of water. In the conventional ZnCl2 electrolyte,…...
A Mercedes-Backed Battery Company Claims It Cracked Solid-State Batteries
2+ day, 12+ hour ago (325+ words) The promised land of electric vehicles is inherently tied to our ability to mass produce vehicular-grade solid-state batteries. I know, I know, there are keyboard warriors right now queuing up in our comments to say, "bUt wE AlReAdy hAvE eVs…...