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systems have recently emerged for quantum technologies: single fluorescent defects in silicon. These single color centers are not only incorporated in silicon, the ideal platform for large-scale
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demonstrated ion trapping of single Yb+ ions. Optical clocks based on ultra-narrow transitions in trapped ions and neutral atoms have reached fractional uncertainties in the low 10-18 range, enabling landmark
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. The activity of the Research axis 3 falls into the domain of quantum nanophotonics. We are first interested in nanosources of light: - colloidal semiconductor nanocrystals based on CdSe, at the single object
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molecules are frequently trapped within endosomal compartments and subsequently degraded. The development of new lipids, particularly cationic and ionizable lipids, capable of promoting interactions and
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Chemistry and Materials for Environment and Health develops analytical methods for the detection of organic molecules mainly in the air but also in other environmental matrices (water, soils). The activities
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, we particularly study the activation of small molecules (such as H₂O, CO₂, N₂O) as well as proton-coupled electron transfer processes. The EMPRe team has all the necessary equipment
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electrochemical characterization of new chromophores, promising molecules will be used as active materials in OSCs and OLEDs Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant/UMR6200-VERVER-027
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Economic and Social Action Committee after 6 months of service Molecular data storage relies on the ability to write and read digital information encoded onto large molecules. Recently, digital synthetic
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microscope. The objective is to investigate the characteristic lifetimes of excited states in individual molecules and interacting molecular systems. This approach will enable the study of their optical
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symmetry is broken, as at interfaces. SHG intensity depends on the number of adsorbed molecules, their orientational distribution, and the local electrostatic environment, and has proven sensitive