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Field
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in materials processing, polymer/composite materials, or manufacturing technologies Experience with experimental laboratory work and data analysis Interest in numerical simulation and/or process
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PhD position: Nanoengineering refractory compositionally complex alloys for extreme conditions (M/F)
fundamental correlations between composition, microstructure, and irradiation-induced behavior, in order to guide the design of high-performance RCCA materials. The results will provide design strategies
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materials, polymers, composites, or barrier applications is considered an asset · Previous experience in space-related materials, environmental durability, or protective coatings is a plus Language
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of the position: The successful applicant will focus on the development of innovative melamine-based polymer-metal composite materials for the reactive capture and (thermos)catalytic conversion of CO2, studying
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catalytically active composite materials by combining these MOFs with a library of enzymes produced by a partner laboratory. The materials obtained will be characterised in terms of their structure, as
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) the preparation and characterization of porous MOFs, as well as the corresponding composite materials produced by incorporating deep eutectic solvents (DES) into the MOFs, MOF/DES; b) the development of mixed
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of cementitious composites using waste materials, with experience incorporating fly ash, glass powder, and construction waste being valued; c) knowledge in evaluating the durability of concrete, with experience in
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publications, participating in conferences). Required skills: • Solid knowledge of heterogeneous catalysis, including the synthesis, physicochemical characterisation and catalytic evaluation of composite
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disciplines of composite mechanics and electrochemistry, presenting compelling technical challenges and offering exciting opportunities to develop and innovate with new materials. These composites will provide
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Materials R26-06 Development of Advanced Ceramics and Composites R26-07 Development of Magnetic Materials with high functionality by Data-Driven method R26-08 Welding and Joining R26-09 Microstructure