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heterostructures and transition metal oxide membranes using a Heidelberg Nanofrazor scanning thermal probe lithography system. The project is 2/3 funded by an Alliance Stipend collaboration with EPFL, combining
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to develop next-generation soft robotic grippers with integrated sensing for use in automated biological laboratories. The grippers should be capable of handling irregular, soft, and fragile lab items
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of the devices in the state-of-the-art DTU Nanolab cleanroom facilities using quantum dot imaging, lithography, etching and metal deposition. In both projects, the overall objective is to increase the efficiency
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of silicone polymers, including crosslinking and tailoring of soft materials. Foam preparation and characterization, with experience in analysing porosity, microstructure, and density. Advanced analytical
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processing and hybrid BCI design Machine learning (ML) Bioinspired control systems Neuroplasticity and motor recovery Real-time control of soft exoskeletons Your Role As a PhD candidate, you will: Develop and
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top-ranked master thesis and/or through experience with conducting research The following soft skills are also important: Curiosity and interest within the interrelationship between urban design and
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analysis of nanoscale materials in hard and soft matter. Since 2018, DTU Nanolab is extended to provide expertise in soft matter from small molecule complexes to biological cells. Technology for people DTU