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Innovation in science, and in quantum-, nano- and bio-technologies depends on a rigorous understanding of the inner workings of custom-tailored materials. Since the elementary building blocks
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tissues or reveal micro- or nano-structural features, like the small air sacs in lungs. To overcome these limitations, alternative X-ray imaging methods have been developed: X-ray phase-contrast and dark
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without invasive surgery. Project background We develop advanced focused ultrasound technologies, adaptive closed-loop control algorithms, and ultrasound-responsive micro/nano therapeutic carriers as an
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the AIM-PACE project, which aims at developing a new generation of safe-and-sustainable-by-design, bio-based and circular plastics by combining AI, microbial technology, computer modelling, and polymer
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I supervise a broad portfolio of projects in surface and materials physics, with a strong focus on novel electronic materials such as topological insulators, moiré metamaterials, and atomically thin
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from an interational research community at conferences and during mobility. Your network and team The CMAT Department offers a multi-disciplinary working environment, focused on micro-, nano-, and atomic
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/SPECT, CT, MRI, optical, etc.) therapeutic applications (radiotherapy, immunotherapy, phototherapy, etc.). Investigate mechanisms at the nano-bio interface to better modulate immune responses, the tumor
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functionalization. Chemical characterization by different means (FTIR, UV-Vis, electron microscopies, TGA, NMR, EPR and elemental analysis, among others). Morphological characteriztion electron microscopy, (SEM, TEM