2022
DOI: 10.1002/ange.202210405
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A Highly Dynamic Covalent Polymer Network without Creep: Mission Impossible?

Abstract: Dynamic covalent polymer networks provide an interesting solution to the challenging recyclability of thermosets and elastomers. One of the remaining design constraints, however, is balancing thermal reprocessability in the form of material flow with dimensional stability during use. As a result, many chemistries are being investigated in order to improve bond reactivity control and material robustness. This Minireview highlights a number of promising concepts, with a particular emphasis on disconnecting chemi… Show more

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Cited by 6 publications
(6 citation statements)
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“…To our knowledge, the kinetics of self-healing in CANs have not been directly measured and quantitatively compared to k a or k ex . 74 In the supramolecular network literature, Scherman has demonstrated this quantitative relationship for a host−guest system using cucurbit [8]uril ternary complexes. 13 2.3.…”
Section: Theories and Established Relationshipsmentioning
confidence: 92%
See 1 more Smart Citation
“…To our knowledge, the kinetics of self-healing in CANs have not been directly measured and quantitatively compared to k a or k ex . 74 In the supramolecular network literature, Scherman has demonstrated this quantitative relationship for a host−guest system using cucurbit [8]uril ternary complexes. 13 2.3.…”
Section: Theories and Established Relationshipsmentioning
confidence: 92%
“…For example, a plastic with improved recyclability should exhibit flow at elevated temperatures but undergo minimal rearrangement at room temperature. 8 Similarly, a dynamic hydrogel for biomimetic cell culture should match the mechanics of the native tissue of interest at 37 °C and cannot employ cytotoxic catalysts.…”
Section: Introductionmentioning
confidence: 99%
“…20 nm) by using a plasma sputter coater. All samples were analyzed at an acceleration of 15 A time sweep experiment was performed in parallel plate geometry using 20 mm smooth disks with a strain of 1% and an applied frequency of 10 rad.s −1 for a duration of 400 min at 30 °C. The storage modulus (G′) and loss modulus (G″) were recorded over time.…”
Section: ■ Materials and Methodsmentioning
confidence: 99%
“…The drawback is that the dimension stability cannot be guaranteed due to the automatic bond exchange reaction at room temperature. 54 To fabricate room-temperature recycled wearable electronic devices with excellent sensitivity and service stability, we propose to use the elastomer with CANs structure containing a room-temperature dynamic covalent bond that can be locked in the separate phase as the substrate. Our strategy to prepare the PDMS elastomer is shown in Figure 1.…”
Section: Introductionmentioning
confidence: 99%
“…In this case, CANs containing room-temperature dynamic covalent bonds could be a choice. The drawback is that the dimension stability cannot be guaranteed due to the automatic bond exchange reaction at room temperature …”
Section: Introductionmentioning
confidence: 99%