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of Nano Particles at Empa and also matriculate in ETH Zürich. Position starting from July 2025 or upon agreement. The research focuses on developing innovative plasmonic materials. Surface plasmon resonance
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Professor Nicola Gaston (University of Auckland) ‘Modelling approaches for percolating nanoparticle/nanotube networks’ with Dr Elke Pahl (University of Auckland) ‘Plasmonically-enhanced perovskite devices
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scanning electron microscope (FIBSEM), a Hydra plasmon cryo FIBSEM, multiple screening electron microscopes, cryo light microscopes, and cryo grids preparation equipment. The main function of the facility is
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. Key Responsibilities: To develop process for electroreforming of biomass to chemicals and fuels To fabricate device prototypes of plasmon-enhanced electroreforming of biomass Conduct research and
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in their specialty. Work Experience Requirements (Essential Requirements): ·No work experience is required. Duties related to the College of Arts & Sciences: ·Works on research in plasmon-exciton
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catalytically active metals to drive chemical reactions with light [3-4]. The specific goals of this PhD project are to 1) understand how plasmonic Mg nanoparticles and their surface oxide layer attract and
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working with Professor Alasdair Clark and a US-based device manufacturer on the project, Multiplexed plasmonic metasurface chips for biosensing and biomedical applications. Based on our development of a
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, procurement of consumables, and training of students. Job Requirements: Bachelor’s degree (B.Sc.) in Chemistry, Materials Science, or a related field. Hands-on experience in photo-, plasmonic-, and/or electro
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with a 4th Krios microscope being installed, an Aquilos2 cryo focused ion beam scanning electron microscope (FIBSEM), a Hydra plasmon cryo FIBSEM, multiple screening electron microscopes, cryo light
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driven systems; time crystals; manybody localization; polaritons and other collective excitations (e.g., plasmons, phonon polaritons, excitons, polarons); light matter interactions; linear, nonlinear and