“Silicon has transformed the way we store information, and now it’s transforming the way we store energy.” –Rick Costantino, Group14 However, integrating silicon into battery anodes isn’t without its ...
Tech Xplore on MSN
New process densifies electrolytes, stabilizing lithium anodes for long-lasting all-solid-state batteries
Researchers at the Paul Scherrer Institute PSI have achieved a breakthrough on the path to practical application of lithium ...
A South Korean research team has achieved a volumetric energy density of 1,270 Wh/l using an anode-free lithium-metal battery ...
Anode-free lithium metal batteries, which have attracted attention as candidates for electric vehicles, drones, and ...
Morning Overview on MSN
Japanese startup reveals 3D graphene for faster-charging batteries
Japanese battery innovators are racing to solve the slow‑charging bottleneck that still frustrates drivers and device makers, ...
Interesting Engineering on MSN
75% capacity after 1,500 cycles: New process boosts all-solid-state battery life
Researchers develop new process for lithium-metal solid-state batteries, improving safety, stability, and energy density for ...
A new study introduces a simple molecular-engineering strategy that dramatically improves the reversibility of zinc plating ...
The facility, with a steady-state capacity of 500,000 tonnes per annum, would be the largest in Africa once ramped up.
The well-established MSM II mechanical switch family is growing. With the MSM II (Common Anode), SCHURTER is introducing a ...
Could an electric vehicle travel from Seoul to Busan and back on a single charge? Could drivers stop worrying about battery performance even in winter? A Korean research team has taken a major step ...
Kenneth Buckle, a visiting scientist at the Center for Integrated Manufacturing Studies at the Rochester Institute of Technology, provides this explanation. This question, which appears simple and ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results