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found here: https://www.tue.nl/en/research/research-groups/polymer-performance-materials . The TU/e offers academic education that is driven by fundamental and applied research. We combine scientific
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Systems (ICMS), in which all polymer-related research groups at the TU/e participate. A description of the group can be found here: https://www.tue.nl/en/research/research-groups/polymer-performance
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green, as extra mass means extra energy consumption. Polymer composites offer light weight solutions to potentially reduce 20-30% of mass. However, current generation (thermoset) solutions are hard
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engineered composite materials with various types of polymers and precious metals that are difficult to recycle. Thus, after used, cardiac catheters are usually incinerated, resulting in significant material
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obtained from biomass are promising building blocks for sustainable polymers and specialty chemicals, while electrochemical carboxylation offers the opportunity to incorporate CO₂ under mild conditions using
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Production Printing, combining polymer science, rheology, and computational modeling to create the inks and coatings of tomorrow. Information Printing is evolving toward sustainability, precision, and
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biomolecular polymers, demonstrate its circularity, ensure product safety, and assess regulatory implications in preparation for future clinical studies. To conquer obesity, such a biodegradable, non-fossil
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materials engineering, plastics and metals present complementary strengths and challenges. Metals offer strength, conductivity, and wear resistance while polymers enable complex geometries and lightweight