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candidate will investigate ion transport through atomically thin membranes made of 2D polymers and graphene derivatives in close collaboration with experimental partner groups MPI Halle and Leiden University
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-Rossendorf (HZDR). We aim to significantly improve measurement efficiency and accuracy in AMS and in SIMS (Secondary Ion Mass Spectrometry) measurements. For this we pursue a novel approach to improve
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or dysfunction of these ion channels is associated with various diseases such as lysosomal storage disorders, cardiac arrhythmias and heart failure. Further information can be found on our homepage . The BMC is
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of inorganic ions and organic matter can cause defects in electrolyser stacks, resulting in costly process disruptions. This project considers: i) development of analytical methods for the quantification
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to understand the lattice dynamics in perovskite systems. The candidate will employ fast time-resolved X-ray diffraction at synchrotron facilities to reveal the details of halide ion migration in lead-halide