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the development of novel piezoelectric thin films. This research project focuses on the development of piezoelectric nitrides (e.g. AlScN) using reactive high-power impulse magnetron sputtering (HiPIMS
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will contribute to the NCCR Separations . Your tasks Development of an advanced testing infrastructure for sorbents and processes in DAC: Planning, design and implementation of novel infrastructure
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Materials science and technology are our passion. With our cutting-edge research, Empa's around 1,100 employees make essential contributions to the well-being of society for a future worth living. Empa is a research institution of the ETH Domain. The Center for X-ray Analytics develops X-ray...
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well as with clinical partners on the development of an injectable hydrogel system for controlled drug delivery. You will design the hydrogel, tune its properties and subsequently functionalize it to achieve
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teams from universities, research institutions, and museums in a highly collaborative network, supported by the Muoniverse Research School, which coordinates training, exchanges, and career development
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teams and provides comprehensive training, exchange opportunities, and career development through its Research School. As positions serve as bridges between groups, we seek candidates who enjoy
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training, exchanges, and career development for PhD students and postdocs. Learn more at https://www.muoniverse.ch/ . Muoniverse positions often serve as bridges between individual research groups and
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. The Urban Energy Systems Laboratory (UESL) pioneers strategies, solutions, and methods to support the development of sustainable, resilient, and equitable urban energy systems. Our work combines technology
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for applications ranging from magnetoelectronic devices to advanced biomedical systems. A central strength of our group is the development and operation of unique, home-built scanning probe microscopy platforms
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Ph.D. Position in Organic Chemistry, Polymer Chemistry, and/or Sol–Gel Chemistry & Materials Science
scientific objectives include: Elucidating how monomer structure, solvent choice, and oligomer formation govern polymerization pathways, phase behavior, and network evolution Understanding polymer–solvent