Project cooperationUpdated on 27 May 2025
Scalable Printed Electrodes and MEAs for Green Hydrogen and e-Fuels
About
The Printed Energy Devices Group at Eurecat specializes in the development and prototyping of scalable printed electrodes and membrane-electrode assemblies (MEAs) for advanced electrochemical energy technologies.
We offer:
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Formulation of functional inks for electrochemical applications (HER, OER, ORR, CO₂RR)
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Design and fabrication of printed electrodes and membranes, including MEA assembly
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Integration into PEM, AEM and CO₂ electrolysis systems
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Electrochemical performance validation and characterization
Our expertise supports TRL 3–6 and is suitable for:
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Electrolyzers for green hydrogen production
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Fuel cells for decarbonized energy use
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Electrochemical reactors for CO₂ valorisation into synthetic fuels
Topic
- CM2025- 04: Carbon capture, utilisation and storage (CCUS)
- CM2025- 05: Hydrogen and renewable fuels
Type
- R&D Partner
- Technology Partner
- Demonstrator
- Validator/Living lab
Similar opportunities
Project cooperation
- CM2025- 05: Hydrogen and renewable fuels
Clemens Kubeil
Project cooperation
Electrochemical energy conversion and storage materials & technologies
- R&D Partner
- CM2025- 05: Hydrogen and renewable fuels
- CM2025-02: Energy system flexibility: renewables production, storage and system integration
Yaolin Xu
Assistant Professor of Advanced Energy Materials at Aalto University
Finland
Project cooperation
CM2023-05 Hydrogen and renewable fuels - Green Ammonia Project Partnership
- R&D Partner
- Technology Partner
- Validator/Living lab
Şiringül Ay
Chief Senior Researcher at TUBITAK MAM
Kocaeli, Türkiye