Sort by
Refine Your Search
-
positions in 2026 focussing on nanoparticle catalysis using advanced operando electron microscopy. If you thrive in a collaborative, cutting-edge setting and want to make a global impact, we want to hear from
-
mutiple Postdoc positions in 2026 focussing on nanoparticle catalysis using advanced operando electron microscopy. If you thrive in a collaborative, cutting-edge setting and want to make a global impact, we
-
focus on in situ and operando X-ray scattering studies of the formation, growth and catalytic properties of complex nanocrystals. The project also involves frequent use of advanced electron microscopy
-
. • Quantitative analysis of aquaporin trafficking dynamics using advanced fluorescence microscopy and 3D image-based vesicle segmentation. • Molecular engineering of aquaporin constructs to dissect trafficking
-
microbiological and analytical techniques including isolation of quorum-sensing-bacteria, design of RNA FISH probes, high-throughput testing on microbial cultures, analytical tools such as confocal microscopy, flow
-
extensive use of surface science methods and also includes the most advanced methods of microscopy through its collaboration with VISION. Visiting large scale facilities such as synchrotrons for EXAFS and
-
media Experience with microscopy and image analysis (e.g. ImageJ, Python, MATLAB) Ability to work independently and collaboratively in an international research environment As a formal qualification, you
-
integrates CRISPR-based genome engineering, quantitative and live-cell microscopy, biochemistry, and computational analysis to dissect how cells sense and respond to replication-associated threats. Recent work
-
genome engineering, quantitative and live-cell microscopy, biochemistry, and computational analysis to dissect how cells sense and respond to replication-associated threats. Recent work from the lab has
-
production via at least one of the following techniques: magnetron sputtering, electrodeposition, wet chemical methods. The catalysts will be characterized via XPS, XRD, and electron microscopy and we will