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design enables fine control over catalytic efficiency and product selectivity, particularly for the CO₂ reduction reaction (CO₂RR). However, further improvements in catalytic performance toward
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work will be conducted within the OHMS team (Oscillators, Clocks, Metrology and Systems) of the Time and Frequency department at Femto-ST, led by Dr. C. Lacroûte. The group benefits from its world
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to artifacts such as non specific absorption, parasitic reactions, or diffusion based resolution loss. In this project, we will design and control a surface modifcaiton process based on a double, photo
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simulations, optical modeling, and rigorous experimental validation. The focus will be on the design, prototyping, and testing of a novel XAO instrument based on the iMz architecture. Unlike conventional
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, there is a strong demand for the development of non-invasive methodologies, able to probe chemical gradients in the vicinity of individual nano objects in operando conditions. In this PhD thesis, we plan