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hydrogen in N-based semiconductors. We will use micro-photoluminescence, also time-resolved, Raman, (also in near-field regime), and auto-correlation measurements to probe quantum dot-like states. Where to
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PhD thesis student (f/m) at ESRF and University of Bath to study CO₂ capture by coupling X-ray Raman
Reference Number NS26-ESRF02 Is the Job related to staff position within a Research Infrastructure? No Offer Description Context & Job description Thesis subject: Coupling X-ray Raman and optical Raman
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NIST only participates in the February and August reviews. Research efforts are underway to probe biological molecules with Raman spectroscopy in three states-crystal, semi-solid, and solution
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The job duties will be the following: Develop innovative Raman strategies for the monitoring and identification of small microplastics (≤ 300 µm) in marine environments. Implement analytical methods
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properties. Raman spectroscopy methods, such as confocal or surface-enhanced Raman spectroscopy, will be used for high-resolution chemical characterization of the biomaterials, supplemented by complementary
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Responsibilities: Design and functionalize nanoparticles with different molecular receptors for array-based nanosensing. Perform spectroscopic measurements, including surface-enhanced Raman scattering (SERS
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focuses on a modular sensing system combining ultraviolet (UV), visible (VIS), and near-infrared (NIR) reflection spectroscopy, fluorescence spectroscopy, and Raman spectroscopy, supported by a co-optimized
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a support for catalysts. The post-doc's objective will be to understand the mechanisms of plasmon-assisted catalysis and to follow in situ chemical reactions for surface enhanced Raman spectroscopy
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well as expertise in morphological, cyto‑histological, molecular analyses, confocal microscopy, and Raman spectroscopy techniques applicable to the study of plant responses to water and salt stress. Where to apply
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FTIR/Raman spectroscopy, DSC, DMA, photorheology and mechanical/adhesion testing. A modelling approach will be used to link irradiation conditions to the generation of reactive species and to