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microporous and mesoporous frameworks, which make them highly versatile in catalysis. In this PhD, you will explore how composition, porosity, and metal doping influence catalytic performance, contributing
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in a non-degree course or a PhD programme, within the scope of the project Decarbonising lithium recycling from spent Li-ion batteries - Li-cycle, funded by FEDER and by national funds, within
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Circuits Project description: Neuronal synapses are remarkably heterogeneous and dynamic structures that vary widely in molecular composition, nanostructure, and signaling strength. This rich variety
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implement advanced statistical models, linking species occurrence, movement, and behaviour to environmental drivers. Conduct quantitative analyses of trophic interactions, monitoring data and diet composition
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Institut de Chimie des Milieux et Matériaux de Poitiers | Poitiers, Poitou Charentes | France | about 1 month ago
: Gas physisorption (N2, Ar, CO2, H2), TGA. Compositional: GC/MS, elemental analysis. Adsorption Tests: High-pressure isotherms, selectivity for CO2/H2 and CO2/CH4 Funding category: Contrat doctoral PHD
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within the Advanced Polymer and Composite Materials Laboratory in the Kong research group, working closely with industry partners and other postdoctoral researchers and HDR students in the Kong group
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with strong expertise and interest in developing MOFs and their composites for sensing. Metal-organic frameworks (MOFs) have gained significant attention in sensing due to their high surface area
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strong expertise and interest in developing MOFs and their composites for catalysis. The job vacancy involves designing, synthesizing, and characterizing highly catalytic active MOF composites
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focuses on the development of new composite materials and devices through the combination of biopolymers with organic and inorganic micro or nanofillers. Both the chemistry and the structure
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://www.sheffield.ac.uk/postgraduate/phd. Further Information on the Particle Physics group in Sheffield and our projects can be found here: https://www.sheffield.ac.uk/mps/research/physics/particle Funding Notes