Core Technologies
Core Technology
Material innovation and process breakthroughs that solve the key challenges of solid-state battery energy, lifetime and safety.
01—03

01
Expansion Buffering Technology
Solves the volume-expansion challenge of silicon-based anodes, substantially improving cycle life and safety.
A buffering absorption layer and elastic network reserve deformation space for active materials, reducing structural stress and interface damage.
- Absorbs volume strain
- Suppresses particle cracking
- Improves cycle stability

02
In-situ Solidification Technology
Enables efficient electrolyte solidification, raising energy density and production efficiency while reducing cost.
The electrolyte precursor fully wets electrode pores and complex interfaces before curing in place, forming continuous, stable ion-transport channels.
- Full pore wetting
- Continuous interfaces
- Scalable manufacturing

03
Safety Coating Technology
Forms a dense protective material layer that reduces short-circuit risk at the source, ensuring intrinsic safety.
A uniform, continuous functional coating on key material surfaces stabilises the electrode–electrolyte interface and suppresses side reactions and defect propagation.
- Uniform dense coverage
- Stable key interfaces
- Lower short-circuit risk
