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. This includes the controlled synthesis of nanocatalysts, their advanced characterization (TEM, XRD, operando spectroscopies), and analyzing the relationship between their structure and catalytic activity
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called MCTPs (Multiple C2 domains and Transmembrane region Proteins) forming a tightly constricted tubular ER structure surrounded by a PM tube. PD operates as critical routes for communication and
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approaches, from biochemistry to single-molecule biophysics, molecular and cell biology, and transcriptomic analyses. The group benefits from strong collaborative networks, including with structural biologists
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together CNRS researchers and ENS-PSL faculty members. The successful candidate will join the Deformation and Structures team, which specializes in the observation and modeling of tectonic processes, from
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, are intended for use in measuring the thermal conductivity of nanometrically structured semiconductor materials. The technological development of ultra-low temperature thermometers is at the heart of the lab
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charge of the IMN experimental part of the ANR BiBOP project on electron microscopy and XPS spectroscopy under controlled illumination and environments. Perform structural, physicochemical, and optical
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modification. • Electrochemical characterization (impedance spectroscopy, polarization curves, stability tests). • Structural and microstructural analysis (XRD, SEM, TEM, XPS, etc.). • Collaboration with
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structural characterization of the samples using various experimental techniques, such as ellipsometry, X-ray photoelectron spectroscopy (XPS), and UV-visible spectroscopy; (3) carrying out scanning probe
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. The team has the expertise and tools required for structural and optical characterization, as well as the cleanroom technology needed for photonic structure fabrication. Advanced optical characterizations
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study the structure and dynamics of proteins. The main objective is to design and implement nanodevices to study biological molecules and analyze light in the THz range. This work focuses on improving