We have developed the world's first additive manufacturing platform for solid-state sodium-ion batteries. We don't just improve the ingredients; we've completely changed the recipe.
View The ArchitectureCapacity Loss at 5C
More Abundant (Na vs Li)
Non-Flammable Core
Modern batteries are constrained by 2D layered manufacturing. This creates tortuous ion pathways, distinct failure interfaces, and limits on energy density. Incumbents are optimizing a candle; we built the lightbulb.
Current gigafactories are locked into wet-coating processes, making them structurally unable to pivot to 3D architectures.
Our solution is a monolithic, 3D-printed cell using Triply Periodic Minimal Surface (TPMS) geometries. This maximizes surface area while minimizing ion travel distance.
Our competitive advantage is the integration of proprietary material "inks" with a custom multi-material additive manufacturing engine. This diagram outlines our validated workflow.
Proprietary "Inks"
The "Engine"
Sintering Profile
*Output: A fully solid-state, non-flammable Sodium-Ion cell with Gyroid Architecture.
We avoid the "Red Ocean" of EV batteries initially. We are targeting high-value stationary storage where safety is paramount.
Request Market DeckUninterruptible Power Supply (UPS) for AI Compute. High willingness to pay for safety & density.
Utility-scale shifting. Leveraging Sodium abundance for cost leadership.
Licensing the "Ink & Engine" platform to global OEMs.