CORDIS Project
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This project aims to revolutionize electron microscopy by enabling the imaging of large volumes with atomic resolution and chemical detail. It combines advanced data acquisition techniques and computational algorithms to overcome current limitations, facilitating the study of critical materials and their properties.
Electron microscopy is essential to understanding structure-property-function relationships in modern materials engineering, condensed matter physics, chemistry, and structural biology.
Yet, due to complicated scattering physics, todays electron microscopes can only image tiny volumes with 3D atomic resolution.
Within this project, I will turn the tables by utilizing and inverting the scattering physics to image scale-bridging volumes with atomic detail and chemical superresolution.
Combining co…
FRIEDRICH-ALEXANDER-UNIVERSITAET ERLANGEN-NUERNBERG
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