Aktuelle Jobs im Zusammenhang mit Thesis: Laser reduction of graphene oxide layers on stainless steel for PEM-FC - Aachen - Fraunhofer


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    Aachen, Deutschland Laser Technology Vollzeit

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  • Aachen, Deutschland Production Technology Vollzeit

    The »Roll-to-Roll Technology« department develops solutions for the series production of components for the hydrogen economy. These include proton exchange membrane (PEM) fuel cells and electrolysers, the manufacturing costs of which are to be reduced to enable even faster market penetration and the associated widespread use. As a student assistant, you...


  • Aachen, Deutschland Fraunhofer Vollzeit

    At the Fraunhofer Institute for Laser Technology ILT, we have been shaping the future of laser technology for 40 years and are Europe’s leading centre for contract research and development.We are currently looking for support for an innovative project in the field of laser powder bed fusion (LPBF) additive manufacturing, which was invented at Fraunhofer...


  • Aachen, Nordrhein-Westfalen, Deutschland Fraunhofer-Gesellschaft Vollzeit 45.600 € - 67.200 € pro Jahr

    At the Fraunhofer Institute for Laser Technology ILT, we have been shaping the future of laser technology for 40 years and are Europe's leading centre for contract research and development.We are currently looking for support for an innovative project in the field of laser powder bed fusion (LPBF) additive manufacturing, which was invented at Fraunhofer ILT...

Thesis: Laser reduction of graphene oxide layers on stainless steel for PEM-FC

vor 2 Wochen


Aachen, Deutschland Fraunhofer Vollzeit

The Chair of Technology of Optical Systems TOS at RWTH Aachen University, together with the cooperating Fraunhofer Institute for Laser Technology ILT, is Europe's leading centre for basic and contract research in the field of laser technology. The development of fuel cells is a promising area in the field of sustainable energy generation. Bipolar plates are an essential component of fuel cells and play a decisive role in their efficiency and service life. Corrosion resistance and contact resistance play a crucial role in the development of coated bipolar plates. The aim of this work is to investigate and optimise the corrosion resistance and contact resistance of laser-reduced graphene oxide coatings.     What you will do You will produce graphene oxide layers on stainless steel substrates by ultrasonic spray coating As part of your work, you will deal with the laser processing of these layers You will analyse how laser processing affects corrosion resistance and contact resistance You will also identify potential improvements and propose optimisations to the coating system Your results will actively contribute to the further development of coating technology and its application in fuel cells     What you bring to the table You are a student of materials science, chemistry, physics, mechanical engineering or a related subject area With your interest in technical problems and innovative solutions, you have the ideal prerequisites You are characterised by a structured and responsible way of working You enjoy working independently on complex tasks and developing solutions in the process Initial experience in dealing with laboratory techniques or laser technology is an advantage, but not a must   What you can expect 👥 Team spirit: Creative, interdisciplinary environment with a motivated team, flat hierarchies and a ‘you’ culture.🖥 Workplace: Excellent machinery and equipment as well as first-class office facilities.💪 Co-creation: Practice-orientated final thesis in an innovative applied research environment.🧘‍♀️ Work-life balance: Benefit from flexible working hours on a trust basis.➕ Advantages: Opportunity to benefit from exciting corporate benefits.🚐 Travel: Good transport links, parking spaces directly in front of the institute, an e-charging station and a multi-storey car park.   The position is temporary until completion of the final thesis. We value and promote the diversity of our employees' skills and therefore welcome all applications - regardless of age, gender, nationality, ethnic and social origin, religion, ideology, disability, sexual orientation and identity. Severely disabled people are given preference if they are equally qualified. Interested? Apply online now. We look forward to getting to know youDid you already know? We give you even more insights on our .🗯️    Questions about this position will be answered by Julius Funke, M.Sc.Telephone: +49 241-8906-430   Fraunhofer Institute for Laser Technology ILT    Requisition Number: 80044                Application Deadline: 09/30/2025