Verschicke keinen 08/15-Lebenslauf — erstelle einen Lebenslauf und ein Anschreiben, die genau auf diese Rolle zugeschnitten sind.
Fraunhofer Institute for Solar Energy Systems ISE in Freiburg im Breisgau invites applications for a student assistant position. The role supports the Encapsulation and Integration group, developing interconnection concepts and lamination processes for ultra-thin solar cells and contributing to module manufacturing with industrial equipment.
You will learn current research on III-V multi-junction cells, work hands-on in a laboratory environment, and build demonstrators while planning experiments
As one of the world's largest solar energy research institutes, the Fraunhofer Institute for Solar Energy Systems ISE makes a significant contribution to a sustainable, economical, secure, and socially equitable energy supply worldwide. Our goal is to advance the energy transition by providing concrete, implementable technological solutions through excellent research results, successful industrial collaborations, and spin-offs. To this end, our 1,300 employees conduct research in four key areas: energy supply, energy distribution, energy storage, and energy utilization. Fraunhofer ISE's state-of-the‑art R&D infrastructure, with 22,300 m² of laboratory space, enables cutting‑edge research at an international level.
Would you like to play an active role in shaping the energy transition and write your master’s thesis in a research field relevant to the future? With us, you’ll find the academic expertise and technical infrastructure you need to achieve this goal.
You will support our “Module Technology” department, which focuses on the development and manufacturing of innovative solar modules for various applications. These include, among others, vehicle‑integrated solutions, roof‑tile‑like formats, as well as colored and high‑performance solar modules. We use both single‑junction silicon and III‑V multi‑junction solar cells. III‑V multi‑junction solar cells consist of several subcells stacked on top of one another, based on various compound semiconductors from Groups III and V, such as GaAs. Using triple‑junction solar cells, we have already achieved a world‑record‑breaking module with an efficiency of 34.4%.
The master’s thesis described in this call for proposals is part of the WSS project ( https://www.ise.fraunhofer.de/de/ press-and-media/news/2025/sustainable-energy-transition-werner-siemens-foundation-funds-research-on-highly-efficient-tandem-photovoltaics.html), in which we are further developing highly efficient III‑V multi‑junction solar cells and their module interconnections. To further enhance sustainability, cost‑effectiveness, and module efficiency, ultra‑thin solar cells are also to be used at the module level in the future. Due to their thinness, these cells exhibit film‑like mechanical behavior, thereby presenting both new challenges and new opportunities for module development, which will be investigated and leveraged as part of this work.
Our Module‑TEC solar module production laboratory is equipped with industrial systems for cell interconnection and module fabrication, which are used to develop innovative interconnection concepts and optimize lamination processes. The goal of this master’s thesis is to develop and experimentally validate a wiring and lamination process that enables the reliable integration of ultra‑thin III‑V multi‑junction solar cells into a solar module.
For our group “Encapsulation and Integration”, we are looking for a student assistant to begin as soon as possible, with the opportunity to write a master’s thesis, to perform the following tasks:
In addition to the thesis, a contract as a research assistant will be established. The remuneration for this is based on the degree of the academic qualification.
We value and promote the diversity of skills among our employees and therefore welcome all applications – regardless of age, gender, nationality, ethnic and social background, religion, ideology, disability, and sexualorientation and identity. Severely disabled persons will be given preference in case of equal qualification.
Questions about this position will gladly be answered by:
Dr. Laura Stevens
+49 (0) 7 61/45 88-2583
Leonhard Böck
+49 (0) 7 61/45 88-2147
Fraunhofer Institute for Solar Energy Systems ISE
www.ise.fraunhofer.de