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"Models development using artificial intelligence algorithms for mass gain/scale thickening, internal oxidation prediction based on high temperature exposure in oxidizing atmospheres". Main Duties
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and micro- and nanostructured interfaces for energy conversion, storage, and management technologies. Thin films with different compositions, including oxides, metals, and hybrid materials such as MOFs
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therapies before transplantation. In this PhD project, you will develop and evaluate innovative strategies to detect, prevent, and repair oxidative stress–associated injury in high-risk donor livers
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/Biomaterials or related fields; Specific Requirements The candidate must have good knowledge of: cell cultures and in vitro models; assessment of cytotoxicity and cell viability; assessment of oxidative stress
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The importance of oxide nanoparticles spans from fundamental astronomy (e.g. nanosilicate dust particles) to applied catalysis (e.g. photoactive TiO2 and electroactive IrO2 nanoparticles). Across these fields
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selected candidate will be involved in laser ablation deposition of thin layers of transparent conducting oxides (TCO), characterization of electrical and optical properties, drafting project stage reports
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ferroelectric oxides with strong second-order nonlinearity are essential platforms for electro-optical and nonlinear photonics. The ELLIPTIC focuses on Lithium Tantalate-on-Insulator (LTOI) technology, a platform
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changes in all the cell types involved will also be investigated in depth, focusing on energy production and mitochondrial oxidative stress. Characterization will be carried out using omics analyses
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Matériaux de Strasbourg (IPCMS–UMR7504), within the “Oxides in Thin Films” team of the Department of Inorganic Materials Chemistry, under the supervision of Daniele Preziosi. Staff researcher at IPCMS. Also
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have good knowledge of: cell cultures and in vitro models; assessment of cytotoxicity and cell viability; assessment of oxidative stress and reactive oxygen species; cell biology techniques, as