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SD-26006 PHD STUDENT IN METAL DECORATED METAL OXIDE NANOSTRUCTURES FOR ENHANCED PLASMONIC LIGHT H...
nanomaterials, thin films, and light–matter interactions? Do you want to explore how we can design materials that control light at the nanoscale? This PhD thesis offers a unique opportunity to work on plasmonic
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industrial applications that hold great technological potential. Our research focuses on Materials physics, Quantum technology, Soft & living matter, and Advanced energy solutions. Topics extend from
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Published Monday 24 Nov 2025 Deadline Thursday 15 Jan 2026 Work area PhD Organisational unit Erasmus School of Social and Behavioural Sciences (ESSB) Salary € 3.059 - € 3.881 Employment 0.8 fte - 1
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RPTU University of Kaiserslautern-Landau • | Kaiserslautern, Rheinland Pfalz | Germany | about 12 hours ago
Degree PhD Course location Kaiserslautern Teaching language English Languages Discussions are held in English (100%). Programme duration 8 semesters Beginning Only for doctoral programmes: any time
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, medicines, and even fuels. Their properties, like how stable or smooth they are, determine how well these products work. Studying emulsions also helps scientists understand fundamental processes in soft
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-like dynamics in synthetic systems remains a major challenge across physics, chemistry, biophysics, and materials science. In this PhD project, you will: Develop an experimental platform to study 3D self
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range of soft and academic skills courses in German and English. In addition, the CERes organises social and cultural events for international PhD students at the University of Münster. University
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(Friedrich) at the department of Chemical Engineering and Chemistry, the Transport in Permeable Media (Huinink) and physicists in Theory of Polymers and Soft matter (Lyulin) groups at the Applied Physics
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» Physical chemistry Engineering » Chemical engineering Engineering » Biomedical engineering Engineering » Microengineering Researcher Profile First Stage Researcher (R1) Positions PhD Positions Country
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connections between research and education. Our research is clustered in three focal areas: Fluids, Bio and Soft Matter (FBSM); Plasmas and Beams (PB); and Nano, Quantum and Photonics (NQP). Our shared ambition