Dissociate transfer exchange of tandem dynamic bonds endows covalent adaptable networks with fast reprocessability and high performance
Development of covalent adaptable networks (CANs) has connected thermosets and
thermoplastics and brought about various functions. However, combining the high …
thermoplastics and brought about various functions. However, combining the high …
Dual‐Dynamic Chemistries‐Based Fast‐Reprocessing and High‐Performance Covalent Adaptable Networks
K Hu, B Wang, X Xu, Y Su, W Zhang… - Macromolecular …, 2023 - Wiley Online Library
Covalent adaptable networks (CANs) possess multiple functions including reprocessing (or
recyclability), self‐healing, welding, shape shifting, 3D printing, etc., due to the network …
recyclability), self‐healing, welding, shape shifting, 3D printing, etc., due to the network …
Fast‐Reprocessing, Postadjustable, Self‐Healing Covalent Adaptable Networks with Schiff Base and Diels–Alder Adduct
Covalent adaptable networks (CANs) are a new type of polymers, which possess excellent
performance of thermosets and reprocessability of thermoplastics. Nevertheless, it is still a …
performance of thermosets and reprocessability of thermoplastics. Nevertheless, it is still a …
Facile synthesis of hemiacetal ester-based dynamic covalent polymer networks combining fast reprocessability and high performance
Dynamic covalent polymer networks (DCPNs) can address the recycle or reuse issue of
thermosets due to their network rearrangement from the dynamic bond exchange. However …
thermosets due to their network rearrangement from the dynamic bond exchange. However …
Advancing Recyclable Thermosets through C═ C/C═ N Dynamic Covalent Metathesis Chemistry
J Zheng, H Feng, X Zhang, J Zheng… - Journal of the …, 2024 - ACS Publications
Thermoset polymers have become integral to our daily lives due to their exceptional
durability, making them feasible for a myriad of applications; however, this ubiquity also …
durability, making them feasible for a myriad of applications; however, this ubiquity also …
Mechanically robust and reprocessable imine exchange networks from modular polyester pre-polymers
Covalent adaptable networks (CANs) containing reversible cross-links impart recyclability to
thermoset materials without sacrificing their desirable properties (eg high tensile strength …
thermoset materials without sacrificing their desirable properties (eg high tensile strength …
Scalable and facile synthesis of acetal covalent adaptable networks with readily adjustable properties
Covalent adaptable networks (CANs) were rapidly developed to address the recycle issue of
thermosets; however, facile and scalable synthesis of CANs is still a challenge. Here, we …
thermosets; however, facile and scalable synthesis of CANs is still a challenge. Here, we …
Coded Interlocked Covalent Adaptable Networks Enabled by Parallel Connections of Cation− π Interactions and Aromatic Disulfide Bonds in Epoxy
L Zhou, L Zhou, R Chen, G Chang… - ACS Applied Polymer …, 2023 - ACS Publications
Covalent adaptable networks (CANs) that are cross-linked by reversible dynamic bonds
have been widely investigated, aiming at making the permanently cross-linked thermosets …
have been widely investigated, aiming at making the permanently cross-linked thermosets …
Thermomechanical activation achieving orthogonal working/healing conditions of nanostructured tri-block copolymer thermosets
Conventional thermosets, despite their technological significance in today's materials
economy, present a modern sustainability challenge because of their lack of end-of-life …
economy, present a modern sustainability challenge because of their lack of end-of-life …
Fast reprocessing of acetal covalent adaptable networks with high performance enabled by neighboring group participation
Q Li, S Ma, P Li, B Wang, Z Yu, H Feng, Y Liu… - …, 2021 - ACS Publications
Covalent adaptable networks (CANs) represent a transition material combining favorable
features of thermosets and thermoplastics. However, it is still a huge challenge to …
features of thermosets and thermoplastics. However, it is still a huge challenge to …
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