How electrodes charge and discharge
New MIT analysis probes charge transfer in porous battery electrodes for the first time.
New MIT analysis probes charge transfer in porous battery electrodes for the first time.
New field of "strain engineering" could open up areas of materials research with many potential applications.
MIT researchers find that contrary to conventional wisdom, cathodes made of disordered lithium compounds can perform better than perfectly ordered ones.
MIT researchers find a way to boost lithium-air battery performance, with the help of modified viruses.
Highly active catalysts could be key to improved energy storage in fuel cells and advanced batteries.
Professor Yang Shao-Horn works at the cutting edge of basic energy science research
Laboratory crash tests show both vulnerabilities and ways to improve the safety of lithium-ion batteries used in electric and hybrid vehicles.
Imaging reveals what happens during charging; could lead to improved batteries for electric cars.
For the first time, researchers power an implantable electronic device using an electrical potential — a natural battery — deep in the inner ear.
Fundamental reactions behind advanced battery technology, revealed in detail by advanced imaging method, could lead to improved materials.
Donald Sadoway’s radical rethinking of electricity storage could revitalize renewable-power technologies.