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Field
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quantum sensors, leveraging state-of-the-art electron microscopy facilities at the Condensed Matter Physics and Materials Science Department (CMPMS) and the Center for Functional Nanomaterials (CFN
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collaborative programme bringing together a team of leading experts in advanced electron microscopy imaging, first-principles modelling, metal halide semiconductor thin-film and device fabrication, and
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), Neutron Sciences Directorate at Oak Ridge National Laboratory (ORNL). As part of the team, you will carry out in-situ studies of droplet interface bilayers (DIBs) using fluorescence microscopy techniques
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. reactive sputtering, Pulsed laser deposition, ALD, e-beam evaporation, etc.) Thin film characterization (e.g. x-ray diffractometry, optical microscopy, XPS, optical spectroscopy) Analytical electron
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of view (Raman spectroscopy, scanning electron microscopy, atomic force microscopy, etc.); - Participate in progress meetings and report writing. The work will be carried out at the Laboratory
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: Manipulation of ultrashort laser pulses from an industrial ytterbium laser for high-order harmonic generation and photoemission electron microscopy of nanostructured samples. The project's goals, based on a
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leverage state-of-the-art in-situ transmission electron microscopy (TEM), including Lorentz TEM, and will have the opportunity to utilize other advanced techniques, such as ultrafast electron microscopy
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Postdoctoral Appointee - Investigation of Electrocatalytic Interfaces with Advanced X-ray Microscopy
both within and outside the laboratory. Preferred Knowledge, Skills, and Experience Hands-on experience with liquid transmission electron microscopy (TEM). Knowledge of electrocatalysis, especially CO₂RR
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laboratory facilities for culturing as well as experimental work on microalgae in temperature-controlled rooms, advanced microscopy and imaging labs as well as a molecular lab. The post doc will collaborate
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of artificial intelligence, microscopy, and quantitative biology, translating cutting-edge research into robust tools that are used by researchers worldwide. Our work contributes directly to enabling reproducible