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combines structural biology (single-particle cryo-EM), protein engineering (including non-canonical amino acids), fluorescence spectroscopy (FRET, environment-sensitive dyes), and classical ligand binding
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. Empa is a research institution of the ETH Domain. At Empa’s Centre for X-ray Analytics, we investigate bio-nano assemblies from lipid nanoparticles (LNPs) to polymer-based nanosystems using powerful
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and the conditions under which desorption may occur. Little is known about how environmental ageing and transport affect the sorption behavior of plastic particles. In arable soils, key knowledge gaps
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for the last decade adopted a suite of cutting-edge biophysical techniques. We utilize a blend of structural biology (single particle cryo-EM), protein design (non-canonical amino acids), fluorescence
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Group , Elementary Particle Physics , Elementary Particle Theory , Engineering , Environment , Enzymology , evolution , Experimental Astroparticle Physics , Experimental Astrophysics , Experimental Atomic
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to contamination like dust particles. These drawbacks are not present when operated inside flow channels with clean gases, which is the case for the applications addressed in this project. We will focus on two types