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In this PhD position, you will help design the next generation of circular plastics systems by combining hands-on polymer processing with data-driven modelling. The PhD study is a full-time, fixed
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control offered by light, you will develop new pathways to convert persistent plastic materials under mild conditions. Are you our next PhD candidate in sustainable polymer chemistry and photocatalysis
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, Chemical Engineering or related fields; excellent skills in organic synthesis, polymer synthesis and chemical characterization; interest in the material characterization of recyclable networks (rheology, DMA
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-responsive polymers, coatings, fibres, engineering plastics and biomedical materials. Growing focus on the use of artificial intelligence techniques to support and accelerate the experimental work, e.g. data
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develop new pathways to convert persistent plastic materials under mild conditions. Are you our next PhD candidate in sustainable polymer chemistry and photocatalysis? Your research challenge In this PhD
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. Together, these mechanisms strongly influence the long-term behaviour and durability of these engineering plastics. This PhD project aims to investigate the mechanisms governing the long-term evolution
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the AIM-PACE project, which aims at developing a new generation of safe-and-sustainable-by-design, bio-based and circular plastics by combining AI, microbial technology, computer modelling, and polymer