LIMAXA™: The Next Generation of Fully Solid-State Aluminum-Ion Batteries
High Performance, Exceptional Safety, and Sustainability: Discover the LIMAXA Revolution.
Welcome to the future of portable energy: LIMAXA. This fully solid-state aluminum-ion battery brings together a semi-liquid gallium–aluminum anode, a photopolymerized electrolyte, and a MnO₂–Si cathode, delivering energy densities of up to 1000 Wh/L, extended lifecycle, and significant reductions in both risk and cost.
Performance & Benefits
Performance & Benefits: Introducing the Next Level of Energy Delivery
LIMAXA sets a new standard for power solutions by marrying high energy density with unparalleled reliability. Our fully solid-state design, built around a semi-liquid gallium–aluminum anode and a photopolymerized electrolyte, boosts operational efficiency while mitigating common battery pitfalls like dendrite formation and electrolyte leakage. Here’s how we exceed expectations:
Elevated Energy Density:
Achieve up to 600–1000 Wh/L, packing more power into a smaller footprint, suitable for everything from compact devices to large-scale storage.Extended Cycle Life:
The semi-liquid Ga–Al anode naturally prevents dendrite growth, enabling significantly longer service life—beyond 2000 charge cycles—while retaining high performance.Enhanced Safety:
By eliminating flammable solvents and moving to a completely solid structure, LIMAXA minimizes fire risks and operational hazards often associated with traditional battery systems.Robust Operation:
The self-healing property of the gallium–aluminum interface ensures consistent performance despite repeated cycling, high discharge rates, or temperature variations.Eco-Conscious Design:
Relying on abundant metals like aluminum and gallium, our battery fosters simpler recycling pathways and a reduced environmental footprint compared to cobalt- or nickel-intensive alternatives.
Discover how LIMAXA redefines what a battery can do, bridging cutting-edge energy storage with sustainability, reliability, and superior all-around performance.