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on making new polymers . We synthesize macromolecules by new methods and try to control their nano-structures as well as to apply them to real-world applications. If you have strong organic chemistry
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ferroelectric thin films. Additional structural and functional characterization tools will be employed (scanning probe microscopy, X-ray diffraction, transmission electron microscopy and many more...) We will set
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100%, Zurich, fixed-term Greenhouse gas (GHG) emissions from material extraction, manufacturing of construction products, as well as construction and renovation of buildings are estimated at 5-12
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to analyze crystallographic data and model electronic structures in complex materials. The work involves creating code for processing diffuse scattering data, performing density functional theory (DFT
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"Building Culture") of the Swiss National Science Foundation SNSF within the project "Beyond Replacement Construction: Implementing the Socio-Ecological Transformation of the Swiss Built Environment". In
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European universities, research centers, and companies. The successful candidate will develop novel 3D casting techniques for non-photocurable biodegradable polymers, integrate magnetic structures
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National Science Foundation SNSF within the project "Beyond Replacement Construction: Implementing the Socio-Ecological Transformation of the Swiss Built Environment". In collaboration with the group
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synthetic routes to organic molecules, transition metal complexes and functionalized carbon nanomaterials. Gain insight into the electronic structures, magnetic/thermochemical properties of newly synthesized
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: Process optimization and optimal path planning for polymer extrusion 3D printing. Hierarchical control structures for 3D printing processes studying process control and motion control problems. Integration
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Frameworks (COFs) with magnetic structures for targeted drug delivery, ensure biodegradability and precise magnetic control, and perform comprehensive in vitro and ex vivo studies to assess drug encapsulation