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Process: designing, preparing, shaping and characterizing materials in order to discover, control and optimize specific functions. The ICMCB carries out fundamental research on model materials and/or
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. The position is funded by a national ANR project (ANR pHSELECT), which aims to study the local control of pH at the surface of electrocatalysts to modulate the selectivity of the products of electrochemical
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biprisms, direct electron detection camera (K3, Gatan) and imaging filter (GIF Quantum ER, Gatan). The microscope has automated drift control for in-situ experiments [5]. Chip-based holders for in-situ
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techniques. Desirable experience: manipulation with infrared SNOM; manipulation preferably with RHK control electronics; FTIR spectroscopy. - FTIR spectroscopy; infrared nano-spectroscopy - Electromagnetic
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Paint project and the Depth Control program, we are developing a prototype of a portable X-ray fluorescence spectrometer, in macro scanning mode (MA-XRF) coupled with confocal mode (C-XRF). Ultimately
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on Solid State Chemistry, Materials Science and Chemistry and Process: designing, preparing, shaping and characterizing materials in order to discover, control and optimize specific functions. The ICMCB
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integration mechanisms in neural networks, particularly in motor control structures. The work will be conducted under the supervision of Dr. Antoine Valera, as part of the ERC Cerecode project. The INCI is
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of the interface, the mobility of lithium and electronic charges at this level, using materials with controlled morphology and surface state, through isotopic exchange techniques and/or homo/heteronuclear
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. Optimization of surface chemistry. Characterization of chiral objects after deposition using spectrometric and piezoelectric techniques. The aim is to control the deposition and properties of chiral objects
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quantum systems and correlated systems coupled to cavity fields). The position is within the ERC Consolidator "Light-Control of Nonequilibrium Quantum Matter". The theoretical activity will be based