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Phd / Forschungszentrum Jülich

Forschungszentrum Jülich Germany Phd Scholarship 2025 (Fully Funded)

Scholarship
Germany
On-site
Published Jun 30, 2025

Overview

This research role is part of the PHOENIX – Launch Space Power-to-X joint project, a strategic initiative funded by the German Federal Ministry of Research, Technology and Space. The project plays a critical role in accelerating innovation in P2X technologies and aligning them with the European Green Deal and Germany's lignite phase-out.

As a doctoral researcher, you will focus on high-temperature technologies such as Solid Oxide Electrolysis Cells (SOEC) and Solid Oxide Fuel Cells (SOFC). Your research will directly support the development of sustainable energy value chains involving hydrogen production, biogas conversion, and syngas generation through co-electrolysis.

Description

This research role is part of the PHOENIX – Launch Space Power-to-X joint project, a strategic initiative funded by the German Federal Ministry of Research, Technology and Space. The project plays a critical role in accelerating innovation in P2X technologies and aligning them with the European Green Deal and Germany's lignite phase-out.

As a doctoral researcher, you will focus on high-temperature technologies such as Solid Oxide Electrolysis Cells (SOEC) and Solid Oxide Fuel Cells (SOFC). Your research will directly support the development of sustainable energy value chains involving hydrogen production, biogas conversion, and syngas generation through co-electrolysis.

Eligibility

To apply for this PhD position in Power-to-X systems, you should have:

A Master’s degree (with above-average grades) in mechanical engineering, chemical/process engineering, energy systems, or a related discipline.
Strong knowledge of thermodynamics, heat/mass transfer, and fluid mechanics.
Experience in modelling and simulation tools (e.g., MATLAB/Simulink, Python).
Prior exposure to SOEC/SOFC technologies or electrochemistry is a plus.
Excellent written and spoken English and German communication skills.
A self-driven, team-oriented mindset with the ability to work independently.

Additional Information

Project Overview Powering The Green Transition

This research role is part of the PHOENIX – Launch Space Power-to-X joint project, a strategic initiative funded by the German Federal Ministry of Research, Technology and Space. The project plays a critical role in accelerating innovation in P2X technologies and aligning them with the European Green Deal and Germany's lignite phase-out.
As a doctoral researcher, you will focus on high-temperature technologies such as Solid Oxide Electrolysis Cells (SOEC) and Solid Oxide Fuel Cells (SOFC). Your research will directly support the development of sustainable energy value chains involving hydrogen production, biogas conversion, and syngas generation through co-electrolysis.

Key Responsibilities

Design and optimize measurement and test benches for high-temperature electrochemical systems.
Conduct long-term performance testing and real-world load simulations.
Develop real-time diagnostics and error detection using model- and data-driven methods.
Build and implement a digital twin framework for rSOC systems to improve system health monitoring and operations management.
Present findings at international conferences and publish in leading journals.
Mentor and supervise students in areas such as data analysis, monitoring, and system diagnostics.

Degree Level

Forschungszentrum Jülich Germany Phd Scholarship 2025 (Fully Funded) is available to undertake PhD level programs at Forschungszentrum Jülich.

Available Subjects

Following subjects are available to study under this scholarship program.
Electrochemistry
Energy Technologies

Benefits

Forschungszentrum Jülich offers an exceptional work environment with:

An interdisciplinary, international research team.
World-class scientific infrastructure and laboratories.
Participation in international conferences and project collaborations.
A structured PhD support system through JuDocS (Jülich Center for Doctoral Researchers and Supervisors).
Flexible work models, including remote work options.
Competitive salary according to TVöD-Bund pay group 13 (75%) plus holiday bonus.
30 vacation days annually, plus bridge days and time off during the winter holidays.

Eligible Nationalities

Open to applicants of all nationalities.

Eligibility Criteria

To apply for this PhD position in Power-to-X systems, you should have:

A Master’s degree (with above-average grades) in mechanical engineering, chemical/process engineering, energy systems, or a related discipline.
Strong knowledge of thermodynamics, heat/mass transfer, and fluid mechanics.
Experience in modelling and simulation tools (e.g., MATLAB/Simulink, Python).
Prior exposure to SOEC/SOFC technologies or electrochemistry is a plus.
Excellent written and spoken English and German communication skills.
A self-driven, team-oriented mindset with the ability to work independently.

Why Choose Forschungszentrum J Lich

With over 7,000 researchers, Forschungszentrum Jülich is a leading hub for interdisciplinary research at the intersection of energy, information, and bioeconomy. The institute actively drives forward the energy transition, digital transformation, and climate sustainability through high-impact projects and international collaboration.
Jülich combines scientific excellence, innovative engineering, and a supportive academic environment to help young researchers succeed in their careers and make a global difference.

How To Apply

All applications must be submitted via the official application portal. Email submissions are not accepted.

Visit the official job posting and apply before July 6, 2025 :

Apply Here

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Funding

Fully Funded

Organization

Forschungszentrum Jülich

Degree

PhD

Subjects

Electrochemistry, Energy Technologies

Nationality

International Students

Country

Germany

Source

Information provided by scholarships_ads.

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