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for the oxygen evolution reaction (OER) in acidic media for green hydrogen production through PEM water electrolysis. The project involves materials characterization, electrochemical evaluation and in-situ UV-Vis
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training throughout the duration of their PhD, plus periodical monitoring and evaluation activities. The objective is to provide students with all the support they need for the proper development
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procurement lifecycle, from needs assessment through tendering, award, formalisation, and contract execution. Supporting and attending tender evaluation committees. Preparing minutes, formal notices, requests
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a range of other disciplines, manage the programme in close collaboration with the GL, represent the Nanomedicine Lab in evaluation and funding committees and apply for funding of the research
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energy storage. · Perform detailed STEM analyses on project-related materials provided by IMPRESS partners, contributing directly to the evaluation and development of novel PEC systems
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on the above topics will be positively evaluated. Teamwork skills, Fluent English (both spoken and written) Summary of conditions: Full time work (37,5h/week) Contract Length: Temporary (4 years) Location
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to the implementation of the optical setup and evaluation for detection, nanophotonic chip fabrication and characterization, microfluidics design and fabrication, and integration of required optical and electrical
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evaluation and development of novel PEC systems. · Design and implement in-situ TEM experiments using the available gas and liquid sample holders to study dynamic processes in real-time, under controlled