Join us in exploring how the principles of soft matter and biomolecular self-organization can inspire the next generation of functional materials. Our research at the Institute of Biological Information Processing – Biomacromolecular Systems and Processes (IBI-4) combines physics, chemistry, and biology to understand the collective behavior of biomacromolecules and to develop innovative liquid crystal elastomers with programmable mechanical properties. In this project, you will contribute to the fabrication and characterization of novel microscale liquid crystal elastomers using advanced microfluidic techniques and state-of-the-art microscopy and rheology. Your work will help uncover how rational design governs mechanical function, providing new insights for responsive materials with applications ranging from bioinspired actuators to model systems for cellular mechanics.
As part of this project, you will fabricate and characterize novel microscale liquid crystal elastomers (micro-LCEs) based on charged microgels with tailored polymer network architectures. Your work will involve the production of micro-LCE particles using microfluidic techniques, followed by their structural and responsive characterization using microscopy and scattering techniques. You will investigate the influence of temperature and ionic strength on particle conformation and explore the mechanical properties through linear and non-linear rheological measurements on corresponding bulk polymer networks. Your work will be supported by an international interdisciplinary research team.
Some of your specific tasks are in detail:
Please feel free to apply for the position even if you do not have all the required skills and knowledge. We may be able to teach you missing skills during your induction.
In addition to exciting tasks and a collegial working environment, we offer you much more.
We welcome applications from people with diverse backgrounds, e.g. in terms of age, gender, disability, sexual orientation / identity, and social, ethnic and religious origin. A diverse and inclusive working environment with equal opportunities in which everyone can realize their potential is important to us.
Place of Employment: Jülich Start Date: To the next possible date Salary: Pay group 13 (66%) TVöD-Bund Application Deadline: The position will be published until it is successfully filled Index number: 2026D-0757
Tagged as: Life Sciences
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