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for the physicochemical characterization of components. Access to advanced electron microscopy and X-ray facilities is also available. We live a culture of inclusion and respect. We welcome all people who are interested in
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breakdown or electromigration). Compared to other imaging modalities such as electron microscopy, X-ray microscopy is non-destructive and hence ideally suited for in-situ and operando 3D imaging. However, at
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breakdown or electromigration). Compared to other imaging modalities such as electron microscopy, X-ray microscopy is non-destructive and hence ideally suited for in-situ and operando 3D imaging. However, at
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characterization of components. Access to advanced electron microscopy and X-ray facilities is also available. We live a culture of inclusion and respect. We welcome all people who are interested in innovative
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multidisciplinary group at the crossroads of engineering and biology. Our research explores materials, technology and integration of soft bioelectronic interfaces and electronic skins. We design, fabricate and
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Hands-on experience with carrier characterization techniques (e.g., dynamic light scattering, zeta potential, HPLC, electron microscopy) Microfluidic synthesis/purification expertise Knowledge of drug
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systems. By combining state-of-the-art spectroscopy with strongly correlated electron systems, we seek to uncover fundamental physical phenomena that emerge far from equilibrium. Our laboratory continuously