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In polymeric materials, a fundamental transition is required from synthesis out of fossil-based and one time use to continuous reuse of polymeric products. Current recycling methods cannot recover
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synthesis out of fossil-based and one time use to continuous reuse of polymeric products. Current recycling methods cannot recover high-value polymers from complex waste streams such as multilayer packaging
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In polymeric materials, a fundamental transition is required from synthesis out of fossil-based and one time use to continuous reuse of polymeric products. Current recycling methods cannot recover
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synthesis out of fossil-based and one time use to continuous reuse of polymeric products. Current recycling methods cannot recover high-value polymers from complex waste streams such as multilayer packaging
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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