The authors of this work propose the construction of reversibly interlocked macromolecular networks (RILNs) at the interface between immiscible polymers to address the common challenge arising from compounding different polymers together. The proof-of-concept model system is made by stacking cross-linked polyether and styrene–butadiene block copolymer, which, respectively, contain reversible Schiff base and Diels–Alder (DA) bonds. By taking advantage of the synergy between the topological rearrangement of the dynamic networks and migration of the pre-embedded zinc ion catalyst, interdiffusion and interlocking of the temporarily de-cross-linked macromolecular chains can be purposely synchronized. Consequently, the envisaged interfacial RILNs...
The implementation of dynamic chemistries into polymeric materials has led the way towards the devel...
In the expanding field of high-performance materials, polymer-based thermoset composites play an imp...
Despite many efforts, there is no versatile way to realize reversible cross-linking for most polymer...
The authors of this work propose the construction of reversibly interlocked macromolecular networks ...
Since the advent of synthetic polymers over a century ago, polymer science and technology developmen...
This thesis aimed to expand upon the chemistry and potential applications of covalent adaptable netw...
The incorporation of dynamic covalent linkages within and between polymer chains brings new properti...
Chemical recycling of synthetic polymers offers a solution for developing sustainable plastics and m...
Abstract Topological metamorphosis represents a powerful approach to modulate the properties of poly...
Polymer materials provide solutions to some of the most pressing environmental, manufacturing and he...
Cross-linked organic materials or polymer networks have found numerous applications and technologies...
Covalent adaptable networks (CANs) relying on dynamic cross-links have been developed to make the cr...
Polymers have become a ubiquitous part of our lives, filling diverse applications ranging from aeros...
We report a versatile approach to designing printable, re-processable polymer networks with controll...
Incorporating reversible bonds in polymer materials is an attractive method for obtaining crosslinke...
The implementation of dynamic chemistries into polymeric materials has led the way towards the devel...
In the expanding field of high-performance materials, polymer-based thermoset composites play an imp...
Despite many efforts, there is no versatile way to realize reversible cross-linking for most polymer...
The authors of this work propose the construction of reversibly interlocked macromolecular networks ...
Since the advent of synthetic polymers over a century ago, polymer science and technology developmen...
This thesis aimed to expand upon the chemistry and potential applications of covalent adaptable netw...
The incorporation of dynamic covalent linkages within and between polymer chains brings new properti...
Chemical recycling of synthetic polymers offers a solution for developing sustainable plastics and m...
Abstract Topological metamorphosis represents a powerful approach to modulate the properties of poly...
Polymer materials provide solutions to some of the most pressing environmental, manufacturing and he...
Cross-linked organic materials or polymer networks have found numerous applications and technologies...
Covalent adaptable networks (CANs) relying on dynamic cross-links have been developed to make the cr...
Polymers have become a ubiquitous part of our lives, filling diverse applications ranging from aeros...
We report a versatile approach to designing printable, re-processable polymer networks with controll...
Incorporating reversible bonds in polymer materials is an attractive method for obtaining crosslinke...
The implementation of dynamic chemistries into polymeric materials has led the way towards the devel...
In the expanding field of high-performance materials, polymer-based thermoset composites play an imp...
Despite many efforts, there is no versatile way to realize reversible cross-linking for most polymer...