Thermal materials
Move heat. Maintain reliability.



Support efficient heat transfer in polymer systems while maintaining electrical insulation.

Engineered surface chemistry and practical dispersion support integration into existing resin and paste systems.

Create higher-performance thermal materials for electronics, EV batteries and industrial applications.
Typical development targets for Nuenz-enhanced thermal materials include conductivity, stability and mechanical robustness in filled systems.
* Results vary with formulation and application.

Potential gains in optimised formulations.

Improved long-term thermal and mechanical reliability.

Ceramic reinforcement without conductive carbon.

Works alongside conventional thermal fillers.

Thermal interface materials and bonding materials for battery packs, modules and thermal management composites.

Gap fillers, encapsulants and interface materials for power devices and modules.

Thermally conductive adhesives and potting systems for reliable heat management.

Thermally conductive adhesives, thermal interface materials and potting systems for industrial heat management.

Thermally stable compounds for demanding industrial and multi-material assemblies.

Efficient thermal management in functional coatings and composites.
Our silicon nitride fibres are designed for thermal-material systems with controlled size, purity and surface chemistry to support consistent dispersion, formulation flexibility and performance.

Designed for strong filler-matrix interaction and improved wet-out.

Thermally useful reinforcement with electrical insulation.

Crystalline ceramic fibres reduce grain boundary resistance and improve conductive pathways.

Consistent quality, traceability and rigorous testing.

Scalable production and global logistics to support growth.

