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molecular design strategies, bipolar host materials with high triplet energy levels (above 2.8 eV). Various pi-conjugated structures will be explored, including those based on bio-sourced materials
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-chemical characterisation of their textural, structural, optical and catalytic properties resulting from the plasmonic activation of the nanostructures. The second component will involve the development and
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French research laboratories working on thermophotovoltaic cells, photonic structures, and energy-conversion systems. This collaborative environment will provide the candidate with exposure to optical
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processes. The targeted configuration concerns Görtler vortices --- pairs of longitudinal counter-rotating vortices in boundary layers over concave walls --- structures relevant for aerospace and energy
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given application (power generation, refrigeration, heat pumps, or combined cycles). The PhD work will include in particular: - Automatic generation of process superstructures -- Construction of a
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into specialized workshops: wooden furniture; contemporary art; paper and photography; mural paintings, stone materials, and construction sites; panel paintings; paintings on canvas; metals, ceramics, and glass
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of both the filament and the substrate, pressure, gas phase precursor composition) with the film chemical structure and the resulting optical properties will be carried out. The DC candidate will be trained
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aerosol layer, for example by injecting gaseous SO2 into the stratosphere, which then transforms into sulphate aerosols. Variations in this aerosol layer can alter the stratospheric thermal structure and
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(QuantAlps), which brings together 200 researchers working on quantum sciences and technologies. The LPMMC is a joint structure of two world-class research institutions, the Centre National de la Recherche
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the conditions of their formation as well as their structure and stability. The transformation or formation of extra species during oxidative water treatment processes will be studied varying different parameters