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BIOENGINEER.ORG - Bioengineering
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News
The Slow Drain: Tiny Electronic Currents Threaten Solid-State Battery
20+ hour, 49+ 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....
Halogen Chemistry Lifts Sulfur Batteries to a Higher Voltage
22+ hour, 58+ 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…...
Graph-Based Encoding of Curve Driving Through Spatial Keypoints
2+ week, 3+ day ago (818+ words) A new data-driven approach could help automated cars take rural curves in ways that feel more natural to human passengers. Researchers in Germany have converted thousands of real-world cornering maneuvers into a catalog of likely driving trajectories, using spatial “keypoints,…...
Multi-element doping boosts iron-rich sodium layered oxides for ampere-hour
2+ week, 5+ day ago (556+ words) Sodium-ion batteries have long been viewed as a promising alternative to lithium-ion technology, particularly for applications where low cost, abundant raw materials and large-scale energy storage matter more than achieving the highest possible energy density....
KAIST discovers pathway to faster-charging, longer-lasting electric vehicle
2+ week, 6+ day ago (576+ words) KAIST researchers have identified a possible route toward electric-vehicle batteries that charge faster without losing as much performance or lifespan. Their approach uses a three-dimensional “digital twin” of a real graphite battery anode, allowing them to observe how microscopic variations…...
Iron-driven reversible lattice oxygen redox boosts stable 200 Wh/kg
3+ week, 2+ day ago (498+ words) For years, researchers have pursued a tantalizing goal in battery science: making oxygen atoms inside a cathode participate in storing electricity without causing the material to fall apart. A new study now reports a strategy that could bring that goal…...
Oxygen vacancies enable rapid ion transport in advanced battery materials
3+ week, 3+ day ago (522+ words) Lithium titanate, a material already widely recognized for its durability and safety in rechargeable batteries, has revealed an unexpected new capability. Researchers at Graz University of Technology have shown that the material can be transformed from a relatively poor lithium-ion…...
KAIST Transforms Troublesome Protons into Battery Energy-Storage Resources
3+ week, 4+ day ago (476+ words) Bioengineer.org...
New Battery Design Promises Safer, Repairable, More Sustainable Electric
1+ mon, 2+ hour ago (575+ words) Vehicles bioengineer.org Electric-vehicle batteries are often described as the heart of the car, but researchers are increasingly focusing on another question: how easily can that heart be opened, diagnosed, repaired and eventually recycled?...
Finer grains help sodium-ion batteries resist hidden cracking
1+ mon, 17+ hour ago (583+ words) A new study suggests that one of the most persistent problems facing sodium-ion batteries may be solved not by changing what their cathode is made of, but by changing the shape of its microscopic crystal grains....