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complementary microscopy techniques, and developing nanoprobe-based sensing methods. A central goal is to understand nanoparticle behaviour and interactions in complex environments and to establish new approaches
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, Raman spectroscopy, X-ray diffraction, thermal analysis, etc.), electrode fabrication, cell assembly and electrochemical testing. A full suite of electron microscopy (SEM and TEM) and surface analysis
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to work effectively in an interdisciplinary and international research environment The following qualifications are considered an advantage Experience with synchrotron, neutron, electron microscopy, medical
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electron microscopy. Documented experience in photophysical characterization, including UV–Vis absorption spectroscopy, steady-state and time-resolved photoluminescence spectroscopy, PL quantum yield
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microscopy, HSC transplantation and assays of multiple organs. Required skills: PhD in hematology, hematopoietic stem cell biology, aging biology or a related field At least one first-author publication in a
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surfaces. This work builds on our ongoing, long-term research program centered on spin-split electronic structures of quantum wells—an area that has attracted significant attention in the context
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of special relevance Copy of the PhD, master’s degree (or equivalent) and course grades and other merits Short description (max 300 words) of your doctoral thesis If available, an electronic version of your
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-of-the-art biophysical methods (microscopy, spectroscopy, live cell imaging, nanotechnology and neutron and X-ray scattering) to address cutting-edge questions in biology and meet medical challenges. Our joint