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to develop, optimize and apply advanced mass spectrometry approaches for the structural and molecular characterization of ARDCs, and to analyze and interpret the resulting data. - Develop and optimize mass
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the study of rare-earth nickelates in the infinite-layer phase, either partially or fully reduced. Partial reduction of these materials could lead to the emergence of new electronic and structural properties
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of the complex III-V semiconductor stack forming the laser and transferred onto a 300 mm substrate by molecular bonding. A simplified example of the laser structure is: InP (4 µm) / GaAlInAs quantum wells (400 nm
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states. In addition, hybridization between electronic states from different layers can significantly change the electronic band structure and lead to new physical phenomena. In this postdoctoral project
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electron microscopy techniques available at the IPCMS laboratory to investigate the structural and chemical characteristics of these innovative catalytic materials, as well as their evolution under thermal
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, Transmission Electron Microscopy (for their lattice structure and crystalline defects) and transport measurements (both in the normal and superconducting state). Devices will be realized by clean room standard
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of the ligand. In this way, we propose to identify ligands of different sizes and negative charges that can be used to synthesize and characterize metallic molecular structures, taking into account the
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, electron microscopy, X-ray diffraction, etc.). Methodology: • Design and synthesize model substrates to measure the activity of enzyme mimics. • Develop analytical methods to detect and quantify chemical
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responsibility in the construction of the future CMS tracker at the HL-LHC. The successful candidate will make strong contributions to the integration activities of silicon detection modules on the mechanical
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, the candidate will develop structural MS approaches (HDX-MS, mass photometry, native MS and cross-linking MS) for the characterization of mulitprotein complexes. The goal is to provide conformational and