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application. In this PhD, the focus is to rationally develop and process highly crystalline, X-ray sensitive lead-free perovskite material layers through micromanaging their electronic structure by composition
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actions (including web site, webinar, and network profiles) together with all the group members. Support research activities on composite printing Exploitation of results via scientific publication writing
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the mineralogical phase assemblages and physical properties of materials under high-pressure conditions. Analyze experimental and thermodynamic data to infer constraints on Mercury's composition and
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. Characterize the phase assemblages, mineralogical compositions, and textures of experimental samples through analytical methods such as electron microscopy, electron microprobe. Develop and implement
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integrity on the ground. On-line detection and characterization of minor failures within complex (composite as well as 3D printed) structures can lead to a radical reduction of this cost. Requirements
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their electronic structure by composition and dimensionality engineering. Tailoring their optoelectronic performance and stability will be guided by applying an arsenal of characterization techniques and
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placements and courses/workshops on scientific and complementary “soft” skills facilitated by the academic/non-academic composition of the consortium, PROSTAMET’s ambition is to provide young researchers with