Lithium-sulfur batteries have exceptional theoretical capacity and performance in combination with an element in abundant supply. But the intricate reaction mechanism, particularly during discharge, ...
Highly reactive organometallic reagents, like organolithiums (molecules with a carbon–lithium bond) are essential reagents in ...
Researchers at Massachusetts Institute of Technology (MIT) have quantified lithium intercalation rates across various battery materials and utilized this information to create a novel model explaining ...
Researchers at the Tokyo University of Science have experimentally demonstrated that sodium-ion batteries (SIBs) ...
Researchers have found that electrochemical tuning of Ni-rich cathodes can suppress structural collapse and extend Li-ion ...
Sodium-ion batteries (SIBs) are emerging as a sustainable alternative to lithium-ion batteries, thanks to sodium’s abundance and low cost, but their true charging speed remains uncertain due to ...