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hybrid nanoassemblies, composed of photochromic molecules in tight interactions with iron oxide superparamagnetic nanoparticles. Particular attention will be devoted to the size control of nano-objects by
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. The work focuses on how oxidative stress, mitochondrial dysfunction and impaired mitophagy contribute to neuronal dysfunction and degeneration across disease progression. By combining advanced molecular and
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oxidative stress and mitochondrial function assays which include measuring reactive oxygen species and mitochondrial bioenergetics. f. Simulating microgravity conditions to study physiological responses. g
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to: • The design, synthesis and characterization of finely tuned graphene quantum dots (GQDs) and/or GQDs hybrid materials as visible-light-active photocatalysts. • The selective photocatalytic oxidation of 5-HMF
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on a range of gas-phase chemical systems selected to explore the boundaries between valence-bound, non-valence-bound, and temporary anion states. Studies may be extended to metal oxide cluster systems
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methods to understand and predict the adsorption, self-assembly, and protective behavior of N-heterocyclic carbenes (NHCs) on metallic and oxidized surfaces. NHCs are promising corrosion-inhibiting
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seeking a highly motivated candidate with expertise in oxide material synthesis under inert atmospheres (Schlenk technique), physical chemistry, CO₂ reduction, and photoelectrochemical cells (PEC
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Parkinson’s disease, integrating human stem cell–derived neuronal models, in vivo studies and translational human tissue analysis. The work focuses on how oxidative stress, mitochondrial dysfunction and
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CORE A*/A conference paper. Ozone is a powerful oxidizing agent with applications in water treatment, air disinfection, food processing, and material coatings. It effectively eliminates pathogens and
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Materials Spectroscopy (SMS) Laboratory, http://spectroscopy.kaust.edu.sa Institution: Division of Physical Science & Engineering, King Abdullah University of Science and Technology (KAUST) Thuwal, Saudi