A “hybrid” anode material shows potential to improve the capacity and longevity of lithium-ion batteries. An exclusive interview with Electronic Design reveals details about the material, developed at ...
The electrochemical performance of lithium-ion battery anodes is governed by the interplay of ion transport, electrode structure and interfacial stability. Key metrics include specific capacity, rate ...
Tin dioxide (SnO₂) has emerged as a compelling alternative to graphite in lithium-ion battery anodes, owing to its high theoretical capacity and favourable electrochemical properties. During ...
Lithium-metal anode-free batteries promise higher energy density and longevity, but their biggest problem is the dendrites that form inside the battery and ruin it. QuantumScape claims it solved this ...
Solid-state batteries for electric vehicles have been grabbing headlines over the past few years, but most automakers don’t expect them to be ready for commercialization before the end of the decade.
Glass fibers from retired wind turbine blades can be converted into high-capacity silicon-carbon battery anodes, turning a growing waste problem into valuable energy storage materials. (Nanowerk ...