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PhD position: Nanoengineering refractory compositionally complex alloys for extreme conditions (M/F)
fundamental correlations between composition, microstructure, and irradiation-induced behavior, in order to guide the design of high-performance RCCA materials. The results will provide design strategies
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well as their catalytic performance (activity, recyclability, etc.). Ultimately, if these materials demonstrate high catalytic performance in terms of conversion yield, selectivity and reaction kinetics, they could be used
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Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The successful candidate will use state-of-the-art NMR
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Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The objective of this 12-month postdoctoral project is to synthesize a
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transformations, providing sustained growth by way of fertilizer production. Notwithstanding, due to high functioning temperature and pressure, this 'simple' reaction accounts for greater than 1-2% of our annual
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development, yield and reproducibility improvement, and detailed analysis of optical and electrical device performance. Once optimized, the laser sources will be integrated with a high-speed photodiode
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elsewhere as part of the same ANR project will be performed. Refractory high-entropy alloys (RHEAs) with a body-centered cubic (bcc) structure are single-phase solid solutions composed of elements such as Ti
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this field. The successful applicant will have access to cutting-edge research training and infrastructures (including High-Performance Computing resources). Orléans is a medium-sized city on the banks
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skills: Strong background in chemistry, physical chemistry, materials science, or condensed matter physics. Experience in data science, Python programming, high-performance computing and/or quantum
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subsystem will be integrated into an experimental solar thermophotovoltaic platform at PROMES. The candidate will explore the operation of the system under realistic high-temperature conditions using