Dynamic covalent polymer networks (DCPNs) with self-healing and recycling performance are highly relevant to sustainable development. Disposal of plastic wastes generated during DCPN reprocessing still faces serious challenges and deserves to be explored. Herein, high-performance polyacylsemicarbazide (PASC) with DCPNs exhibiting excellent self-healing and recycling properties are synthesized by the reaction of sebacic dihydrazide with isophorone diisocyanate and hexamethylene diisocyanate trimer. Upcycling of the PASC waste generated after four-time reprocessing is achieved by adding epoxy monomers and amine curing reagents, followed by a thermal treatment. The optimized epoxy resin exhibits a tensile strength of 101 MPa, Young’s modulus o...
Since Bakelite and Rayon were first introduced in the early twentieth century, global plastic produc...
Nitrogen-based thermoset polymers have many industrial applications (for example, in composites), bu...
Polymers that repair themselves after mechanical damage can significantly improve their durability a...
Dynamic covalent polymer networks (DCPNs) can address the recycle or reuse issue of thermosets due t...
With growing interest in recyclable polymer materials, due to environmental concerns, attention has ...
Chemical recycling of synthetic polymers offers a solution for developing sustainable plastics and m...
Since the advent of synthetic polymers over a century ago, polymer science and technology developmen...
Thermoset polymers and fiber-reinforced polymer composites possess the chemical, physical, and mecha...
Achieving both higher performance and faster recycling is the target of developing self-healable and...
Polymers have become a ubiquitous part of our lives, filling diverse applications ranging from aeros...
To overcome the disadvantages of difficulty in reprocessing due to rigidity of the thermosetting pol...
Covalent adaptable networks (CANs) relying on dynamic cross-links have been developed to make the cr...
The design and utilization of polymers with healing capability have drawn increasing attention owing...
The huge amount of plastic waste is imperiling our daily life. Here, we designed a green and efficie...
Dynamic covalent networks (DCN) possessing room temperature exchangeable covalent linkages are desir...
Since Bakelite and Rayon were first introduced in the early twentieth century, global plastic produc...
Nitrogen-based thermoset polymers have many industrial applications (for example, in composites), bu...
Polymers that repair themselves after mechanical damage can significantly improve their durability a...
Dynamic covalent polymer networks (DCPNs) can address the recycle or reuse issue of thermosets due t...
With growing interest in recyclable polymer materials, due to environmental concerns, attention has ...
Chemical recycling of synthetic polymers offers a solution for developing sustainable plastics and m...
Since the advent of synthetic polymers over a century ago, polymer science and technology developmen...
Thermoset polymers and fiber-reinforced polymer composites possess the chemical, physical, and mecha...
Achieving both higher performance and faster recycling is the target of developing self-healable and...
Polymers have become a ubiquitous part of our lives, filling diverse applications ranging from aeros...
To overcome the disadvantages of difficulty in reprocessing due to rigidity of the thermosetting pol...
Covalent adaptable networks (CANs) relying on dynamic cross-links have been developed to make the cr...
The design and utilization of polymers with healing capability have drawn increasing attention owing...
The huge amount of plastic waste is imperiling our daily life. Here, we designed a green and efficie...
Dynamic covalent networks (DCN) possessing room temperature exchangeable covalent linkages are desir...
Since Bakelite and Rayon were first introduced in the early twentieth century, global plastic produc...
Nitrogen-based thermoset polymers have many industrial applications (for example, in composites), bu...
Polymers that repair themselves after mechanical damage can significantly improve their durability a...