GM Ventures has invested $10 million in materials science company Forge Nano, which makes Atomic Armor, an innovative EV battery technology. Capital investment into Forge Nano now exceeds $100 million ...
Researchers developed a nano-spring coating with carbon nanotubes on battery electrodes to absorb strain, prevent cracks, and enhance stability, lifespan, and performance. (Nanowerk News) A research ...
DENVER, Oct. 16, 2024 (GLOBE NEWSWIRE) -- Forge Nano, Inc., a materials science company that uses its Atomic Armor™ Atomic Layer Deposition technology to optimize material performance to enable better ...
DENVER, April 29, 2025 (GLOBE NEWSWIRE) -- Forge Nano, Inc., a technology company pioneering domestic battery and semiconductor innovations, today announced the successful close of $40 million in new ...
Forge Nano’s Atomic Armor-powered battery cells demonstrate their material enhancement capabilities, which will be further showcased through Forge Battery. Credit: Forge Nano. Forge Nano, a company ...
Forge Nano, Inc., a technology company pioneering domestic battery and semiconductor innovations, today announced the successful close of $40 million in new funding. The funding was co-led by ...
A research team led by Professor Kyu-Young Park from the Institute of Ferrous & Eco Materials Technology, Department of Materials Science & Engineering, POSTECH conducted joint research with Samsung ...
As it continues on the road to electrification, GM announced that GM Ventures is making a $10 million investment in a Colorado-based materials science company called Forge Nano which specializes in ...
Nano One selected for launch of ALTA, America's first lithium and battery supply chain accelerator. Only OBBB-ready solution for LFP-linking upstream critical minerals to downstream cell manufacturing ...
In hydrogen production catalysts, water droplets must detach easily from the surface to prevent blockage by bubbles, allowing for faster hydrogen generation. In semiconductor manufacturing, the ...
Only OBBB-ready solution for LFP-linking upstream critical minerals to downstream cell manufacturing. Eliminates chokepoints and reliance on foreign-controlled processes, inputs and wasteful ...