Abstract Our society is pursuing chemically recyclable polymers to accelerate the green revolution in plastics. Here, we develop a recyclable polyester library from the alternating copolymerization of aldehyde and cyclic anhydride. Although these two monomer sets have little or no thermodynamic driving force for homopolymerization, their copolymerization demonstrates the unexpected alternating characteristics. In addition to readily available monomers, the method is performed under mild conditions, uses common Lewis/Brønsted acids as catalysts, achieves the facile tuning of polyester structure using two distinct monomer sets, and yields 60 polyesters. Interestingly, the copolymerization exhibits the chemical reversibility attributed to its ...
\u3cp\u3eDynamic covalent bonds in a polymer network lead to plasticity, reshapability, and potentia...
Bio-based polyesters attract a lot of interest with regard to sustainable development as alternative...
201 pagesThe design, development, and implementation of sustainable polymers is paramount to the pre...
While synthetic polymers have largely supplanted natural materials because of their low cost, concer...
Renewable, biodegradable polymers, such as aliphatic polyesters, based on sustainable sources have a...
Renewable, biodegradable polymers, such as aliphatic polyesters, based on sustainable sources have a...
The vast majority of commodity materials are obtained from petrochemical feedstocks. These resources...
The concept of upcycling postconsumer plastics into higher-value products is attractive, but the cha...
Aliphatic polyesters are of increasing interest as replacements for petroleum based commodity polyme...
Chemical recycling of synthetic polymers offers a solution for developing sustainable plastics and m...
Renewable, biodegradable polymers, such as aliphatic polyesters, based on sustainable sources have a...
The design of molecularly recyclable polymers contributes to a possible solution to the end-of-use i...
The growing environmental impact of plastic waste has led to extensive research into the life-cycle...
\u3cp\u3eDynamic covalent bonds in a polymer network lead to plasticity, reshapability, and potentia...
Bio-based polyesters attract a lot of interest with regard to sustainable development as alternative...
201 pagesThe design, development, and implementation of sustainable polymers is paramount to the pre...
While synthetic polymers have largely supplanted natural materials because of their low cost, concer...
Renewable, biodegradable polymers, such as aliphatic polyesters, based on sustainable sources have a...
Renewable, biodegradable polymers, such as aliphatic polyesters, based on sustainable sources have a...
The vast majority of commodity materials are obtained from petrochemical feedstocks. These resources...
The concept of upcycling postconsumer plastics into higher-value products is attractive, but the cha...
Aliphatic polyesters are of increasing interest as replacements for petroleum based commodity polyme...
Chemical recycling of synthetic polymers offers a solution for developing sustainable plastics and m...
Renewable, biodegradable polymers, such as aliphatic polyesters, based on sustainable sources have a...
The design of molecularly recyclable polymers contributes to a possible solution to the end-of-use i...
The growing environmental impact of plastic waste has led to extensive research into the life-cycle...
\u3cp\u3eDynamic covalent bonds in a polymer network lead to plasticity, reshapability, and potentia...
Bio-based polyesters attract a lot of interest with regard to sustainable development as alternative...
201 pagesThe design, development, and implementation of sustainable polymers is paramount to the pre...