
Advanced Material Production, Powdered by Microwave Plasma Innovation
100% Dry Process – No Water, No Solvents
Unlike conventional wet chemical processes, our solvent-free dry synthesis eliminates water usage, dramatically reducing waste generation, processing time and energy consumption. This not only makes production more sustainable but also eliminates risks like moisture contamination, especially important for sensitive materials like NMC-type materials.
Double Stage Plasma High Temperature Reduction (PHTR) Method
Our proprietary two-stage microwave plasma torch system sublimates solid precursors in the first torch and chemically reduces them in the second hydrogen plasma torch. This approach ensures complete precursor transformation, precise particle control and superior material purity, enabling the synthesis of advanced materials in seconds, not hours or days.
Versatile Material Production
Our technology isn’t limited to one output. It enables the synthesis of anode materials (C-SiOx, MLRM), cathode powders (NMC-type, Ni-alloys) and functional alloys (HEA, Permalloy), all from a single unified process. This flexibility makes us an ideal partner across semiconductors, electronics, robotics, aerospace and other industry sectors.
Low-Cost, Flexible Precursor Utilisation
Our method uses readily available and inexpensive precursors (e.g., LiCl, NiCl₂, MnCl₂, CoCl₂) instead of high-cost, specialty reagents like LiOH or Li₂CO₃. This dramatically reduces raw material costs (often by over 50%) and allows custom formulation of materials based on customer or market needs.

Advanced Microwave Plasma Torch Technology
Our patented Double-Stage Microwave Plasma Torch Technology enables ultra-fast, solvent-free synthesis of high-purity materials from battery anodes and cathodes to advanced alloys. This fully dry, airtight process uses low-cost precursors and eliminates calcination, reducing waste, energy use and production time from hours to seconds. It delivers unmatched control over particle purity, morphology and scalability - empowering the future of sustainable, high-performance material manufacturing.