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tunneling induced by excitation transport through solids. Application to spectral separation will be explored. This experimental thesis aims to comprehensively explore "hydro-electronic couplings" in ultra
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synthesis techniques as well as purification and analytical methods is essential. Notions in biochemistry, electron paramagnetic resonance and inorganic chemistry will be appreciated. The candidate should be
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the MINATEC site. Research is focused on the materials science of functional materials and is organized into the following three themes: (1) Functional Thin Films and Surface Nano-Engineering, (2) Interfaces
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Post-Doc- Combinatorial deposition of functional thin films by Spatial Atomic Layer Deposition (M/F)
microscopy, electron microscopy (SEM, TEM) and in situ Raman spectroscopy will be routinely used and will be combined with the developed in situ measurements. For this the postdoc will mainly in charge of
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Technological University and Thales. CINTRA develops research activities on Nano-materials, Nano-electronics and Nano-photonics technologies. The applications of these studies are organized in 4 main programs
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the TIRIS MOLELEC project "Engineering spin-crossover (SCO) molecule/electrode interfaces: towards the next generation of electronic devices" in collaboration with the LCC (Laboratoire de Chimie de
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, surfaces, nanomaterials and electronics. The IJL has 263 permanent staff (30 researchers, 134 teacher-researchers, 99 IT-BIATSS) and 394 non-permanent staff (182 doctoral students, 62 post-doctoral students
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Louyer, the student will explore a new direction in optomechanical research, namely optical levitation. The candidate will mainly perform experimental work, while being trained to optical techniques, nano
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Programme? Not funded by an EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The Institute of Chemistry and Biology of Membranes and Nano-objects is a
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Nanotechnologies, which focuses on an integrative and multidisciplinary approach to developing new devices based on charge and spin. We combine expertise in nano-magnetism and electronics, material science, circuit