Advanced Materials & Printed Technologies

Functional materials, printed electronics, coatings and scalable fabrication methods for next-generation devices.

Oliveris combines materials science with printed and scalable manufacturing methods to develop functional structures, electronic features and device components that can progress from laboratory concepts towards repeatable industrial processes. Our work links materials behaviour with device architecture, electronic interfaces, fabrication constraints and validation requirements so that manufacturing considerations are addressed during development rather than after it.

How we work in this area

  1. Functional and sensing materials
  2. Printed electronics
  3. Thin-film and coating processes
  4. Additive fabrication
  5. Conductive interconnects and device structures
  6. Component miniaturisation
  7. Process development
  8. Prototype manufacture and characterisation

What it enables

  • New device architectures
  • Reduced material use
  • Faster prototype iteration
  • Scalable fabrication routes
  • Manufacturing-ready process definitions

How we collaborate

We work with materials developers, research institutes and industrial partners to translate new formulations and structures into device-level prototypes, test vehicles and scalable process definitions.

Discuss how this capability fits your project

Discuss a consortium role, an industrial application, or a general enquiry.