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their evolution during catalytic operation and activation. You will apply advanced electron diffraction techniques (3DED, 4D-STEM tomography), atomic resolution STEM imaging (HAADF, ABF), EDX and EELS
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characterized ex situ by electron microscopy and x-ray photoelectron spectroscopy, and under operating conditions by X-ray absorption spectroscopy (XANES and EXAFS) and high-resolution Raman and diffuse
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nanotubes. The most efficient catalysts will be characterized ex situ by electron microscopy and x-ray photoelectron spectroscopy, and under operating conditions by X-ray absorption spectroscopy (XANES and
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X-ray videocystometry in awake mice. The candidate will design and conduct experiments exploring the signalling interactions between urothelial cells and sensory nerves innervating the bladder, and
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advanced techniques such as ex vivo calcium imaging and transcriptomics of mouse and human urothelium and DRG neurons, and X-ray videocystometry in awake mice. The candidate will design and conduct
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of these materials.State-of-the-art characterization techniques such as DSC, DMA, DTMA, micro-Computed Tomography (micro-CT), optical microscopy and Scanning Electron Microscopy (SEM) are combined with advanced numerical
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nanotubes. The most efficient catalysts will be characterized ex situ by electron microscopy and x-ray photoelectron spectroscopy, and under operating conditions by X-ray absorption spectroscopy (XANES and
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of nanofabricated sample supports and tracking algorithms for 5D electron diffraction (5DED). EMAT is one of the leading electron microscopy centers in the world and has a vast expertise in both fundamental and
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Degree or equivalent Additional Information Work Location(s) Number of offers available1Company/InstituteUniversity of LeuvenCountryEuropeGeofield Contact Street - STATUS: EXPIRED X (formerly Twitter
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LevelMaster Degree or equivalent Additional Information Work Location(s) Number of offers available1Company/InstituteUniversity of LeuvenCountryEuropeGeofield Contact Street - STATUS: EXPIRED X (formerly