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. Jordi Arbiol and Dr. Alba Garzón Manjón. The objective is to enable correlative in-situ (S)TEM experiments for addressing some of the scientific challenges of the European Green Deal plan, to promote a
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surface biofunctionalization, microfluidics for automatic fluid delivery and complete lab-on-a-chip integration for point-of-care devices. One of the Group's main objectives is to apply the nanobiosensor
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biofunctionalization, microfluidics for automatic fluid delivery and complete lab-on-a-chip integration for point-of-care devices. One of the Group's main objectives is to apply the nanobiosensor devices in real
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scientific developments relevant to the objectives of the Nanomedicine Lab, the projects providing funding and provide relevant expert contributions in collaboration with its project partners · Contribute
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functions and constraints; run multi-objective searches over 2D/vdW candidates (e.g., stacking, composition, twist, strain) targeting relevant figures of merit; incorporate uncertainty and robustness
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functions and constraints; run multi-objective searches over 2D/vdW candidates (e.g., stacking, composition, twist, strain) targeting relevant figures of merit; incorporate uncertainty and robustness
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, optical, and anti-corrosion performance. Our investigations span nanoparticles, nanowires, lithographically patterned micro- and nano-objects, mesoporous and nanoporous structures, electrodeposited thin
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/vdW stacks using predefined target metrics; log and rank candidates based on multi-objective criteria. Integration & automation: script reproducible runs on Linux/HPC, manage datasets, and maintain
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environmental control is one of the Group's main objectives. The Job is framed within a European granted project NIAGARA (101082015) aiming at the development of a photonic biosensor for the understanding
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biofunctionalization, microfluidics for automatic fluid delivery and complete lab-on-a-chip integration for point-of-care devices. One of the Group's main objectives is to apply the nanobiosensor devices in real