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context of energy transition and industrial decarbonization, the recovery of waste heat represents a major technological and environmental challenge. This low-grade thermal energy remains largely
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exciton transport to the reaction center or to a donor-acceptor interface, respectively. Characterizing, modeling and improving exciton transport properties in molecular materials remain essential tasks in
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to locomote towards objectives, remodel their environment or exchange information with their pairs. Self-contracting networks are a good candidate to create artificial soft materials with similar living matter
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and optimize specific functions. The ICMCB carries out fundamental research on model materials and/or materials with potential applications. The ICMCB is a UMR with an average of 280 agents (permanent
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operational. Title: Quantum Nanodiamonds with Group-IV Color Centers for Sensing in Extreme Conditions Keywords: quantum technologies, nanodiamonds, color centers, CVD synthesis, matter, optics, high-pressure
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since its discovery 150 years ago, due to a lack of model species 2,3. The candidate will use a combination of genetic tools to identify the molecular machinery responsible for chromosome fragmentation in
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architectures. Application domains include, among others: meteorology, climatology, aeronautics, automotive, astrophysics, high-energy physics, materials science, energy production and management, biology, and
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conduction properties of materials at the nanoscale. The ANTICHI project aims to develop and demonstrate a unique vacuum Scanning Thermal Microscopy (SThM) instrument capable of making contact thermal