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is a strong need for qualitative and quantitative evaluation of EV loading downstream. A particularly suitable analytical method for this purpose is high-resolution mass spectrometry, allowing
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tissue using mass spectrometry imaging. A concrete goal will be to enhance the signal of bioactive lipids for detection and mapping in tissue. After development, the method will be applied to compare
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develop analytical methods that will enable the study of bioactive lipids in tissue using mass spectrometry imaging. A concrete goal will be to enhance the signal of bioactive lipids for detection and
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analyses and theoretical methods. Furthermore, you will be expected to interact with other members of the DOC-PAST European ERC project, including analytical chemists, mass spectrometry experts
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techniques, like mass spectrometry and genome-wide profiling. Computationally, we analyze our own large data sets and try to integrate results from classical and machine-learning based bioinformatics. Our
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coupled with mass spectrometry) will highlight the hydrogen storage properties (thermodynamic and kinetic) of the materials developed in this project. The student must hold a master's degree in chemistry
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instrumentation. This includes recently acquired NMR, mass spectrometry (LC- and GC-MS, including high-resolution measurements and proteomics), and microscopy (AFM, confocal and fluorescence) instruments
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catalysts? Examples of work that you may conduct during your PhD: Test catalysts in our reactor, equipped with in-line gas-chromatography, FTIR spectroscopy, and mass-spectrometry. Synthesize heterogeneous
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your PhD: Test catalysts in our reactor, equipped with in-line gas-chromatography, FTIR spectroscopy, and mass-spectrometry. Synthesize heterogeneous catalysts by a variety of methods. Utilize isotope
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and selective catalysts? Examples of work that you may conduct during your PhD: Test catalysts in our reactor, equipped with in-line gas-chromatography, FTIR spectroscopy, and mass-spectrometry