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Field
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using atomic force microscopy (AFM), Raman spectroscopy, X-ray diffraction, X-ray photoemission spectroscopy (XPS) and Rutherford backscattering spectroscopy (RBS), • the transfer of 2D materials and van
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diffraction (XRD), profilometry, and spectroscopic ellipsometry, complemented by optoelectronic characterization of the fabricated devices. Overall, the project supports IEMN research on light-emission
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line, glovebox) Proficiency in standard characterization techniques (NMR, IR, MS; GC, GC-MS X-ray diffraction) Familiarity with catalytic reactions; experience with high-pressure equipment (autoclaves
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diffraction at synchrotron radiation In-situ characterization by Infrared spectroscopy and mass spectrometry Collaborate closely with BlueMat partners Share your findings through publications and engage with
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limit of spatial resolution devise computational strategies to ensure diffraction-limited performance dive into hybrid computational/traditional imaging systems and optical design push measurement
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, structure, defect chemistry, and ionic transport behaviour. Comprehensive materials characterisation will be undertaken using structural, thermal, and electrochemical techniques, including X-ray diffraction
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selection process for an indefinite employment contract within the framework of a Line of Research: R&D line: Preparation of advanced hydrogels for generating diffraction gratings and microguides applicable
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(phosphate, oxides) synthesis by solid state reactions, hydrothermal process or electrodeposition. These solids will be characterized through i) diffraction of X-rays (XRD), ii) Scanning Electron Microscopy
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and diffraction-based methods for characterising surface morphologies and orientations is considered. Great emphasis will be placed on personal skills. Join us at KTH KTH shapes the future through
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synchrotron-related spectroscopic techniques. Other techniques may include x-ray diffraction, scanning and transmission electron microscopy, thermogravimetric and calorimetric analysis, visible-UV, infrared and