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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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(PLD, MBE, or similar methods); • Experience in structural characterization (X-ray diffraction, electron microscopy, synchrotron spectroscopy, etc.); • Interest in the study of correlated electronic
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of Research Experience1 - 4 Additional Information Eligibility criteria Technical skills: Plasma etching and wet etching processes; material characterization (XPS, ellipsometry, AFM, electron microscopy
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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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, 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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sarcoplasmic reticulum (SR) with sarcomeres. This will require real-time imaging of the dynamics of these three organelles during flight muscle morphogenesis, as well as high-resolution optical and electron
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environment combining cell biology, advanced microscopy, and quantitative analysis, with access to state-of-the-art imaging platforms and international collaborations. Research Work Environment Resources
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transport, microscopy, and optical spectroscopy, to establish links between electronic structure and emerging physical properties. Design and perform optical and electronic characterization of two-dimensional