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Field
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flow batteries (RFB), enabling affordable and durable long-duration energy storage. The approach is to use hierarchical structures, i.e. complex material layers that can be optimized to specific battery
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toxicity from released elements. To address these, novel aspects will be explored: (i) development of Ti-based amorphous and β-Ti alloys with non-toxic compositions and enhanced biocompatibility; (ii) alloys
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membranes are structured both in a spatial manner and most importantly, temporal manner. Membranes can be seen as mosaics of small domains, or nanodomains, each characterized by a distinct biochemical
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About the Project Main description: Fiber-polymer composites are innovative ad sustainable alternative in construction due to their lightweight, excellent fatigue and durability, which are widely
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, microwave power, and frequency) on the degree and structure of carbonization and graphitization of the electrodes, aiming to reduce battery costs through process optimization. Additionally, the effects
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institutions. The research activity is guided by a process of knowledge production that finds its foundational value in artistic practices, with attention given to performative and compositional practices
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procedure and composition of the catalysts on the structural characteristics, hence catalytic properties. From the gained knowledge, we will be able to control and tailor the critical properties in order to
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vapour deposition (CVD) remains a leading method for CNT synthesis, yet the role of catalyst composition in controlling CNT morphology and purity is still not fully understood. This PhD project, in
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the structural performance of composite sleeves under operational conditions, such as centrifugal forces, bending, and thermal stress. You will work closely with the PEMC and Composites Research Groups, industrial
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The research group Mechanics of Materials and Structures at Ghent University (UGent-MMS) has 4 vacancies for PhD and postdoc research in the field of fibre-reinforced composites. The vacancies