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EU Is the Job related to staff position within a Research Infrastructure? No Offer Description One position available within the research project entitled: “Plasmon mediated biology: Exploitation
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, Microelectronics and Nanotechnology (UMR CNRS 8520 – https://www.iemn.fr/en/ ) is located in Villeneuve d'Ascq, near Lille, France. With a total staff of over 500, the institute has a broad research scope ranging
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plasmons, in topological and correlated states in super-moiré van der Waals heterostructures. Milestones include the development of real-space topological probes using the tensor-network formalism
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. Applications are invited for a full-time Postdoctoral Researcher in development of plasmonic nanopore for single molecule sequencing by surface enhanced Raman spectroscopy (SERS) position under supervision by
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Ministero dell’Università e della Ricerca (MUR)-fondi dell’Unione Europea – programma NextGenerationEU. | Italy | about 1 month ago
The proposed research activity lies within the fields of bio-photonics and plasmonics and focuses on the study and control of light–matter interaction processes in biological systems based on Fluorescence
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the organization of water molecules on the selective adsorption of metabolites depending on their physico-chemical properties. Simulation results will be assessed by experimental surface plasmon resonance (SPR
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cleanroom techniques. Understanding of simulations, design and fabrication of photonic and plasmonic based devices, and micro-fluidics for biological applications. Other Valued Skills Thesis degree based
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to join our plasmonics and photophysics team and work at the interface of nanophotonics and energy-related applications. Key challenges in solar energy harvesting and photocatalysis stem from limited
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selectively target analyte molecules even in the presence of other similar ones in the tested sample. Numerous examples of selective electrochemical and optical surface-plasmon resonance (SPR) sensors have been
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research tasks: (i) modeling electric and magnetic excitations in two-dimensional (2D) materials, and (ii) simulation of charge transport phenomena in plasmonic crystals with 2D electron gas layers, with