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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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, and stability of electrocatalytic systems for H2O oxidation to H2O2, H2O reduction to H2 and NO3- reduction to NH3, in close connection to the catalyst development of DCs 8 and 12. Using operando XPS
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on individual paths and preferences. The PhD candidate will have the opportunity to develop unique datasets and apply quantitative and mixed-method approaches to address policy-relevant questions
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patients. Join TU Delft and LUMC to develop a transcutaneous vascular access, uniting biomaterials, medical technology and clinical nephrology. Job description Fundamental biomedical research and clinical
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personal and academic development are top priorities. We are committed to curiosity driven fundamental research and interdisciplinary research; we aim at advancing science and addressing the major societal
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-Tunnels (DNW), LaVision GmbH, a Formula 1 team and several other aerodynamics institutes. Since 2000 an experimental aerodynamics team has concentrated on the development of advanced non-intrusive
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project, an interdisciplinary and transdisciplinary research project funded by NWO, the Netherlands Research Council, under the call on KIC Consumer behaviour for a circular system transition. See: https
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or socialize. In addition, you will receive all the training you need to evolve as a scientist in this fast-developing field. Please apply through this link: https://careers.tudelft.nl/job/Delft-Postdoc-Spin
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erythrocytes, alongside biomarkers of inflammation and oxidative stress. Using combined laboratory and clinical data, empirically derived algorithms for subphenotype identification will be developed through
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multiscale simulations and AI predict how a breathable material knows when to seal? In this PhD project, you will develop responsive MOF-peptide coatings for adaptive surface functionalization and derive