Advanced catalysts for decarbonisation technologies
ReCatalyst develops and industrialises advanced catalysts designed to accelerate the deployment of hydrogen and other decarbonisation technologies.
Fuel cells, water electrolysers and many emerging clean-energy and chemical technologies depend on critical raw materials, including platinum-group metals (PGMs) such as platinum and iridium. These materials provide excellent catalytic performance but are scarce, costly and geopolitically concentrated. Reducing their use without compromising performance, durability or manufacturability is therefore essential for making these technologies more scalable, economically viable and resilient.
ReCatalyst addresses this challenge through a proprietary and scalable nanotechnology catalyst platform. The platform enables precise control over critical catalyst characteristics, including nanoparticle size and distribution, composition, crystal structure, metal loading and interaction with engineered support materials. This allows us to design application-specific catalysts tailored to customer requirements rather than relying on conventional, standardised catalyst materials.
Our advanced catalyst designs enable more efficient utilisation of valuable catalytic metals, reducing PGM requirements while maintaining or improving the required electrochemical performance and durability. For customers, this can translate into lower critical raw-material exposure, improved system economics and greater supply-chain resilience.
Our current focus is hydrogen. ReCatalyst’s most advanced products are next-generation catalysts for PEM fuel cells, complemented by catalyst technologies for PEM and AEM water electrolysis. Beyond hydrogen, the same flexible nanotechnology platform can be extended into Power-to-X, green chemicals and broader industrial catalysis, where catalyst performance and critical raw-material efficiency are equally important to successful industrial deployment.
Importantly, ReCatalyst’s innovation extends beyond the catalyst material itself. We combine proprietary catalyst design with scalable manufacturing know-how, reproducible lab-to-pilot production and quality control. This enables customers to access advanced catalyst materials designed not only for strong laboratory performance, but also for integration, qualification and eventual industrial-scale deployment.





