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the University of Montpellier and the CNRS. It specializes in the study of sensors, components, and systems 2 intended for hostile environments. The primary objective of the IES is to design and develop innovative
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in quantum clocks and sensors. The network offers international secondments, joint training events, and close interaction with an international cohort of doctoral fellows. The doctoral candidate will
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for the synthesis of carbon nitrides • Multi-step synthesis of carbon nitrides • Material characterization (XRD, gas physisorption, electron microscopy, IR, Raman, solid-state NMR, etc.) • Photocatalytic testing
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of front-end electronics and miniature RF antennas for chronic implantation. You will prototype and characterize the wireless link (power + sensing), design and optimize sensor-resonator coupling, and
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sensing, the continuous increase in the spatial resolution of satellite sensors considerably amplifies the computational requirements for analyzing ever more detailed observations. Physics-informed deep
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physicochemical characterisation of these materials using a wide range of techniques (XRD, IR, NMR, UV-Vis, gas sorption, electron microscopy, etc.), as well as in the evaluation of their catalytic properties
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. Machines must be equipped in-situ with smart sensors and supported by systems that can process such as images and time series, in real time. Machine learning and AI have become essential for driving
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. Organic electronics offer a promising alternative to inorganic electronics for large-area applications, particularly in displays and flexible sensors. Among these devices, Organic Thin-Film Transistors
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renewable products derived from biomass is being considered in all industrialized countries and is on EU's agenda. The goal is to reduce dependence on oil and limit carbon dioxide emissions (greenhouse gas
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life. Expected skills : • Master in chemistry with a background in coordination chemistry, organic chemistry or related fields • Routine in preparative synthesis (including work under inert gas