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at the nanoscale. The Group's research combines state-of-the-art lithographic and materials-processing techniques with advanced electrical, magnetic, and spectroscopic characterization. Current activities centre
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and responsibilities: The researcher will be in charge of supporting the development and optimization of nanomaterial-based biosensing platforms for biomedical applications. The researcher will
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Offer Description The ROMEO project seeks to overcome a major hurdle in nanomedicine: the fact that less than 1% of current nanoparticles reach their target because they are captured by macrophages in
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experience in THz spectroscopy is a plus. Knowledge in electrical characterization will be valuable. Programming skills will be evaluated positively. Communication skills in English are mandatory. Ability
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tackles the growth and characterization of innovative magneto-ionic nanomaterials (where magnetic properties are tuned through voltage-driven ion migration) with applicability in (i) energy-efficient and
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interpretation in the context of the current scientific literature. Work will combine extensive in vitro cell culture-based experimentation, including the use of patient-derived samples, with in vivo validation in