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fabricate, functionalize, and characterize electrochemical interfaces, prepare biomolecular recognition elements, and perform electrochemical characterization and validation of biosensors. The position also
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electrochemical testing. Operation of X-ray diffraction (XRD) instrumentation for phase identification and crystal structure analysis. Support in the characterization of materials using complementary analytical
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performed will include: - Synthesis of hybrid hidrogels/nanostructures, modification and functionalization. - Chemical characterization by different means (FTIR, UV-Vis, electron microscopies, TGA, NMR, EPR
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materials and device designs for energy harvesting based on triboelectricity. Specifically, the researcher will focus on performing COMSOL simulations for the (1) identification of materials composition and
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behavior of catalytic nanomaterials critical for green hydrogen and energy technologies. The candidate will design and perform real-time in-situ TEM experiments using gas and liquid sample environments
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Assays (LFAs), incorporating cutting edge nanotechnology to improve the LFA performance. 2. Synthesis and characterisation of nanomaterials to integrate into the LFAs. 3. Travel
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/he is expected to actively participate and lead part of this project. The tasks to be performed will include: - Synthesis of nanoparticles/nanocojugates, modification and functionalization. - Chemical
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. The researcher will fabricate, functionalize, and characterize sensing interfaces, prepare biomolecular recognition elements, and perform electrochemical characterization of biosensors. The position also involves
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analysis) and device performance. Personal Competences: Proactivity. Team-working and collaborative person. Good communication and writing skills in English will be required (Spanish and Catalan desirable
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the structure and behavior of catalytic nanomaterials critical for green hydrogen and energy technologies. The candidate will design and perform real-time in-situ TEM experiments using gas and liquid sample