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/electrolyte interface at both the positive and negative electrodes, which could be achieved by using an electrolyte having a voltage stability window compatible with the working potentials of the two electrodes
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-performance single-photon sources based on semiconductor quantum dots (QDs) in cavities [1]. In particular, we have developed efficient interfaces between a single material qubit (the spin of a single charge in
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Strasbourg. The unit comprises 12 research teams, 3 platforms, and 3 technical units, employing 80 staff, including 46 researchers/lecturers/engineers and 34 PhD students and postdoctoral researchers. LIMA's
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Additional Information Eligibility criteria Training and experience: A PhD in Materials Science, Computational Chemistry, Physics, or a related field, with a strong background in DFT modeling and experience in
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criteria The candidate should have: ● A PhD in biophysics, biology, physics, or a related field ● Experience in experimental biology (molecular biology, imaging, or genetics) ● Strong interest in
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researcher will work under supervision of Aurélien MARTENS in the ILE group of Accelerator pole and in close collaboration with a PhD student at IJCLab, and external collaborators.. References: N.Yu. Muchnoi
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for expanding the application scope of PE. The project lies at the interface between molecular chemistry, particularly C-H bond activation, and polymer chemistry, with an emphasis on the precise post
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electrochemical evolution, reaction mechanisms, and aging phenomena at electrode-electrolyte interfaces. This position is part of the national PEPR Batteries program. The project aims to develop innovative
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single fluid vortex and a liquid/gas interface in various configurations through theoretical/numerical modelling and stability analyses. The following configurations will be analysed : - a horizontal fluid
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must be performed, with particular attention paid to certain critical areas, such as the warm/cold interfaces and the BCOM beam separation magnet. In this critical area, three beams of different energies