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molecular systems or coordination polymers (PC) for catalytic purposes. Such materials (based on the aforementioned elements niobium and tantalum) are rarely reported or even non-existent in the literature
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the synthesis of novel polymer materials and biologically relevant molecules
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well as damage kinetics. The developments cover a wide spectrum of applications, including metals, composites, polymers and bio-sourced materials. The thesis is being carried out under the joint supervision
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in various sectors: the olive tree in agriculture, ash trees in forestry, and other species such as Osmanthus in the perfume industry or privet and Forsythia in horticulture. This PhD project aims
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origins. The main goal of this PhD thesis is to investigate using computational kinetics the atmospheric degradation processes of emerging contaminants at the molecular level unraveling their most favorable
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, aims to develop solutions tailored to houses from the region's mining heritage, with a view to later expansion at the European scale. The central objective of the PhD thesis associated with this project
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the zeolite framework. The goal of the PhD is to investigate this advanced light-to-chemical processes by: (i) Preparing and characterizing novel hybrid metal-zeolite nanostructures containing hollow cavities
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plan expérimental et les résultats attendus seront : 1. Analyse par cytométrie spectrale des LB circulants de patients sclérodermiques. Pour cela, le PhD aura accès à une biobanque de plus de 400
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are present. Dislocations also offer easy pathways for the diffusion of ions, enhancing the performance of electrolytes. The goal of this PhD thesis will be to model dislocations in several perovskite materials
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intelligence, this project will allow the PhD candidate to continue this research by extending it to other systems of atmospheric interest. DFT data obtained will be used to construct machine learning-based