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to water scarcity, urban heat stress, air quality, and territorial resilience Land-use and land-cover change (LULCC) and its impacts on surface climate, ecosystem services, and socio-economic systems Urban
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wet chemistry and other well-established solid-state methods. Required qualifications: The candidate must hold a PhD degree in Materials Science, Materials Chemistry, Inorganic chemistry, or related
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utilized in MOF synthesis. The material synthesis will involve wet chemistry and other well-established solid-state methods. Required qualifications: The candidate must hold a PhD degree in Materials Science
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for photocatalytic CO2 conversion and water splitting. Materials synthesis will involve wet chemistry and known solid-sate methods such as mechanochemical or pyrolysis. Required qualifications: The candidates must
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wet chemistry and known solid-sate methods such as mechanochemical or pyrolysis. Required qualifications: The candidates must have strong experience in MOF synthesis and characterization with a PhD and
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expertise in engineering arid land agroecosystems with native plant species and soil ameliorants to enhance carbon sequestration and arrest soil erosion by wind. The candidate is expected to roll out
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manufacturing systems, aligned with Industry 4.0 paradigms, and target applications in sustainable energy production, green chemistry, circular economy, and carbon capture, utilization and storage (CCUS
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–water–energy–agriculture interactions, with applications to water scarcity, urban heat stress, air quality, and territorial resilience Land-use and land-cover change (LULCC) and its impacts on surface
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of the physics, chemistry, and structure–property relationships of carbon materials and inorganic solids. Strong skills in materials characterization techniques, including SEM, XRD, Raman, BET, TGA, ICP, and
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, Africa, and beyond. Job description: The LIMSET-UM6P invites applications for post-doctoral researchers in the area of all-solid-state battery. The research areas that the post-doctoral researchers will