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for molecular systems and thin films in combination with AI-driven process optimization. Help us shape the future of chemical research! Self-driving lab platform for photochemical and porosity research Join a
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order to develop a versatile ‘magnetic topology printer’. Both PhD candidates will design and synthesize multilayered magnetic thin films using the NanoAccess facility, and will enjoy theoretical support
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time. You will combine porous-material synthesis, thin-film preparation and in situ infrared spectroscopy to connect molecular reactions, peptide self-assembly and macroscopic sealing. Develop smart
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this PhD project, you will develop responsive MOF-peptide coatings for adaptive protection and follow their chemistry in real time. You will combine porous-material synthesis, thin-film preparation and in
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healthcare, communication and sensing, and have the potential to be disruptive to the whole society. A diversity of PIC-based sensors have been proposed, such as environmental sensors (e.g. gas sensing
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, and multilayer polymer architectures. The goal is to create thin, transparent, robust films that can selectively reflect red, green, and blue light in controlled directions, enabling privacy-preserving