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to keep the materials quality along the fabrication proccess. Apart form the graphene material, the researcher will investigate the development and integration of other thin film materials, such as metals
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as components of therapeutics in oncology and neurology. Neurotechnology based on flexible, thin-film technologies for therapeutic applications in oncology and neurology. The Nanomedicine Lab has been
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gating. The research will explore how the properties of atomically thin materials can be transformed when different two-dimensional crystals are brought together, creating artificial quantum systems with
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vesicle systems to be used as components of therapeutics in oncology and neurology. Neurotechnology based on flexible, thin-film technologies for therapeutic applications in oncology and neurology
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vesicle systems to be used as components of therapeutics in oncology and neurology. Neurotechnology based on flexible, thin-film technologies for therapeutic applications in oncology and neurology
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. (https://gtnam.org/). 'Phonon engineering in precisely assembled atomically thin layers (PETITE)' aims at development of advanced 2D materials with enhanced elastic and thermal anisotropy via phonon
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of nanomaterials or thin films, including unconvential sintering approaches. Characterization of the properties of the printed films and resulting devices. Personal Competences: Ability to work with deadlines
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cryogenic, low-noise electronic, and ultrafast spectroscopy experiments. 4) Carry out device fabrication processes in cleanroom facilities, including lithography, thin-film deposition, etching, and related
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electrochemistry, ferroelectricity and magnetism; magneto-ionics in patterned structures and thin films; atomic force microscopy (including magnetic force microscopy, piezo-response force microscopy, Kelvin probe
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vesicle systems to be used as components of therapeutics in oncology and neurology. Neurotechnology based on flexible, thin-film technologies for therapeutic applications in oncology and neurology