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of optical signals and for modeling optical metamaterials at the nanoscale based on lithograph-free, quasi-ordered arrays of plas-monic nanoantennas obtained with TDW/GLAD, development of plasmonic
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from the investigation of surface plasmons and the design of nano-structured catalyst materials to density functional theory calculations to understand reaction kinetics. It provides an international and
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in clinically relevant environments. Key work assignments include: Design, fabrication, and optimization of high-performance plasmonic nanostructures and SERS substrates for sensing in complex
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, spectroscopy, and biomedical validation in clinically relevant environments. Key work assignments include: Design, fabrication, and optimization of high-performance plasmonic nanostructures and SERS substrates
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enzyme activity assays, DNA/RNA-binding affinity measurement, surface plasmon resonance, etc. Lead substantial experimental planning and scheduling across interconnected studies. Anticipate technical and
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magnetic microscopy to work on “Thermally-driven motion of spin textures” within the Future Leader Fellowship project lead by Dr Naëmi Leo. This project uses the novel localised plasmonic heaters to create
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of Excellence. The Nanomagnetism group (https://www.nanogune.eu/en/research/groups/nanomagnetism ) is seeking to recruit a talented, enthusiastic young scientist who is highly motivated to boost his/her research
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analysis related to nanomaterials and biomaterials. 2. Develop and refine experimental protocols, such as biosensor development, plasmonic nanomaterials synthesis and bioconjugation, immunoassay development
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lab webpage at: https://sbufrenchlab.wordpress.com/. This position provides excellent learning opportunities and access to state-of-the-art resources and facilities, including training and regular
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microscopy and spectroscopy to investigate their unique electronic, structural, and plasmonic properties. Project 2: Exploring the synthesis of metallene layers sandwiched between SiC and graphene