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media and moderate temperatures. These advances have been driven by remarkable progress in enzyme identification and engineering—resulting in highly efficient enzymes for polymers like polyesters—as
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an enthusiastic PhD candidate to help enable the circular economy for plastics within the automotive industry. Working with industry co-sponsor Artifex (https://www.artifexinteriorsystems.com ) and based in
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student will be supervised by a teacher-researcher (Dr. A. Chemtob) and a research engineer (Dr. C. Le). The PhD student will work on the synthesis of polymer monomers and colloids. The main applications
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will work on the synthesis and characterization of polymer- and carbon-based materials and catalysts, and explore their application in plastic depolymerization and sustainable chemical transformations
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contamination of ecosystems and the human body by plastic particles constitutes one of the most pressing environmental crises of our era. The degradation of macro-plastic waste now permeates the human exposome in
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of physical chemistry and materials science, with a focus on organic semiconductors, polymer blends and composites. The group develops new plastic materials for wearable electronics and energy technologies