Nickel-rich layered oxide cathodes (e.g., NCA90) are considered some of the most advanced materials for high-energy ...
Single-ion conducting polymer electrolytes represent a paradigm shift in lithium-battery design by immobilising anionic species within a polymer matrix, thereby allowing only lithium ions to migrate ...
Physics-informed machine learning connects atomic structure with ion transport and electrolyte stability, accelerating better sodium- and lithium-ion batteries.
An international collaborative research group led by Professor Bong June Sung of the Department of Chemistry at Sogang University and Professor Shinji Saito of the Institute for Molecular Science (IMS ...
Lithium-ion batteries (LiBs) are currently the most widely used rechargeable batteries worldwide, powering countless portable electronics, as well as hybrid and electric vehicles. While they are known ...
A team of researchers from the Chinese Academy of Sciences (CAS) has developed a ...
Electrochemical energy storage devices—including lithium-ion batteries, sodium-ion batteries, aqueous batteries, and supercapacitors—have become ...
For grid-scale energy storage and national energy resilience, the U.S. needs better batteries. Lawrence Livermore National ...
Lithium metal has long been considered the ideal material for next-generation rechargeable batteries because it can store far ...
In conventional battery systems, the electrolyte is usually a liquid solution containing lithium salts. Solid-state batteries, in contrast, are electrochemical energy storage devices in which the ...