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polarizing agents for nuclear spin hyperpolarization in NMR spectroscopy and imaging applications. Project Overview: This research aims to leverage radical dynamics to improve spin polarization transfer
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obtained using advanced techniques (UV-Vis, HPLC, 1H and 13C NMR, SEM, FTIR, XRD, etc.). Applicable Legislation: The grant is awarded under the Research Fellowship Holder Statute, approved by Law nº 40
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specialized in instrumentation / electronics. NMR/MRI acquisition sequences: implementation, optimization of standard sequences and innovation at very low field, with a focus on acceleration procedures and
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facilities also include: two photoreactors with lamps of varying intensity and spectra (6 W white LEDs, Kessil lamps at 390 nm, 440 nm, and 467 nm at 45 W), a 400 MHz multi-nuclear NMR spectrometer, an X-ray
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the application of the university’s strategy. This position is available within the Faculty of Science and Engineering: http://sciences.sorbonne-universite.fr Within Sorbonne University, the Faculty of Science and
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particularly valuable. Documented experience in materials characterization, such as NMR spectroscopy, mass spectrometry, X-ray diffraction, X-ray photoelectron spectroscopy, vibrational spectroscopy, and
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photocathodes for long-term hydrogen production, thermoelectric modules for solar waste heat harvesting, or perovskite-silicon devices for light-driven chemical synthesis. For more details, please view https
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science, computational genetics, chemistry, and biotechnology, as well as competitive infrastructure such as advanced microscopy and molecular biology platforms, X-ray techniques, and NMR. The department
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on developing new stable organic radical polarizing agents for nuclear spin hyperpolarization in NMR spectroscopy and imaging applications. Project Overview: This research aims to leverage radical dynamics
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. Hands-on experience with abalytical characterization tools including NMR, LCMS or GCMS. You are expected to be somewhat accustomed to teaching, and to demonstrate good potential within research and