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for patients and clinics. We thus aim to develop a minimally invasive, injectable biomaterial platform designed to enable predictable, long-term ocular delivery of biologics while maintaining optical
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and advanced scanning probe microscopy, and develop innovative magnetic multilayer systems for spintronic and biomedical applications. The position is particularly suited to candidates with a strong
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cells at surfaces for materials-based healthcare solutions. PostDoc to develop a injectable hydrogel for intraocular drug delivery Your tasks Retinal diseases such as age-related macular degeneration and
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of catalysts, electrodes, and ionomer membranes with high time resolution, operando x-ray measurements. Develop electrode architecture and catalyst/electrode modification strategies for enhanced durability
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, electrodes, and ionomer membranes with high time resolution, operando x-ray measurements. Develop electrode architecture and catalyst/electrode modification strategies for enhanced durability, using different
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characterization of 3D-printed SiC-based ceramic metamaterials. We will develop SiC-based thermoplastic feedstocks, a hybrid manufacturing process combining FDM 3D printing and milling, design metamaterials with