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- W2923600337 abstract "Topology dictates various properties of polymer networks, but it is challenging to characterize and manipulate especially for amorphous networks. A complete description of polymer network topology requires consideration of many lengths scales, from ∼100s of nanometers to the molecular level. Loops of various order, one of the dominant topological features of polymer networks, can be directly quantified with network disassembly spectrometry. Through programming of topological information into network precursors, or biasing of polymerization kinetics, it is possible to control several important topological features in polymer networks from the (macro)molecular level, including branch functionality, polymer chain topology, and loops of various order. Recent developments in the understanding/manipulation of polymer network topology have stimulated us to revisit structure–property relationships in polymer networks, as well as to develop novel functional materials by applying topology as a central design principle. Topology plays a critical role in dictating the properties of many materials. In recent years, with advances in synthetic and characterization techniques, substantial efforts have been made to decipher the topology of networks of interconnected molecules, i.e., polymer networks. Here, we discuss classical challenges in the field and review existing strategies to characterize and manipulate polymer network topology from a (macro)molecular level. Several given examples demonstrate how these developments prompted us to revisit structure–property relationships in polymer networks and enabled the preparation of novel functional materials. Finally, we critically examine limitations in current approaches and discuss future perspectives of the field. Topology plays a critical role in dictating the properties of many materials. In recent years, with advances in synthetic and characterization techniques, substantial efforts have been made to decipher the topology of networks of interconnected molecules, i.e., polymer networks. Here, we discuss classical challenges in the field and review existing strategies to characterize and manipulate polymer network topology from a (macro)molecular level. Several given examples demonstrate how these developments prompted us to revisit structure–property relationships in polymer networks and enabled the preparation of novel functional materials. Finally, we critically examine limitations in current approaches and discuss future perspectives of the field." @default.
- W2923600337 created "2019-04-01" @default.
- W2923600337 creator A5026517345 @default.
- W2923600337 creator A5055822738 @default.
- W2923600337 creator A5058975949 @default.
- W2923600337 date "2019-06-01" @default.
- W2923600337 modified "2023-10-15" @default.
- W2923600337 title "A (Macro)Molecular-Level Understanding of Polymer Network Topology" @default.
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