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schemes with ultrashort electron wavepackets. The candidate will participate in one of the following research projects: • Developing a single-electron detector for flying electrons • Probing quantum
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axes such as organic electronics, stimulable materials, self-assembled materials, materials for energy,functionalized nanostructured surfaces and photonics. For 20 years, MOLTECH-Anjou has continuously
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electron microscopy techniques available at the IPCMS laboratory to investigate the structural and chemical characteristics of these innovative catalytic materials, as well as their evolution under thermal
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for studying and engineering electronic properties in quantum materials. By stacking different two-dimensional (2D) materials, it is possible to create systems with new and tunable properties. In
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configuration. First experiments will be performed in a 70-T magnet, at variable temperatures from 1.5 to 300 K, with the aim to investigate correlated-electron quantum materials. A study of the superconductor
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The successful candidate will contribute to the development of a new generation of 3D-printed biomimetic materials designed to model the human intestine in vitro, as part of the BAM-INT project. The project aims
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have access to state-of-the-art facilities, including cleanroom microfabrication, laser micromachining, 3D printing, advanced microscopy, and numerical modeling tools. The project benefits from a close
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the study of rare-earth nickelates in the infinite-layer phase, either partially or fully reduced. Partial reduction of these materials could lead to the emergence of new electronic and structural properties
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implantable devices, combining: - Wireless communication using a backscatter-modulation architecture - Co-design of front-end electronics and miniature RF antennas for chronic implantation - Prototyping and
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photolithography, 3D printing and multiphoton lithography, together with innovative biomaterials. These models will be used to investigate, through advanced microscopy and quantitative image analysis, how