Proprietary Advanced Metal Anode (AMA) TechnologyTM that doubles energy density versus traditional batteries, enables full charge in 10–15 minutes, enhances safety and stability, reduces cost by over 30%, is compatible with existing manufacturing and supports lithium, sodium-ion, zinc and aluminum chemistries for applications in consumer electronics, EVs, renewable energy storage and drones.
Awarded a $100,000 SuperBoost Grant in 2025 to advance lithium metal anode AMA production and prototypes; received a $200,000 Phase I SBIR award in 2024 for R&D; participates in the NSF Energy Storage Engine consortium led by Binghamton University with over 40 academic and industry partners.