Thermoset Shape-Memory Polyurethane with Intrinsic Plasticity Enabled by Transcarbamoylation
Thermoset polymers are known for their superior thermomechanical properties, but the chemical crosslinking typically leads to intractability. This is reflected in the great differences between thermoset and thermoplastic shape‐memory polymers; the former exhibit a robust shape memory but are not cap...
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Veröffentlicht in: | Angewandte Chemie 2016-09, Vol.128 (38), p.11593-11597 |
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Sprache: | eng |
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Zusammenfassung: | Thermoset polymers are known for their superior thermomechanical properties, but the chemical crosslinking typically leads to intractability. This is reflected in the great differences between thermoset and thermoplastic shape‐memory polymers; the former exhibit a robust shape memory but are not capable of redefining the permanent shape. Contrary to current knowledge, we reveal here that a classical thermoset shape‐memory polyurethane is readily capable of permanent reshaping (plasticity) after a topological network rearrangement that is induced by transcarbamoylation. By employing the Jianzhi technique (also known as kirigami), unexpected shape‐shifting versatility was observed for this otherwise classical material. As the essential carbamate moiety in polyurethanes is one of the most common polymer building units, we anticipate that our finding will have significant benefits beyond shape shifting.
Duroplastische Polymere sind für ihre besonderen thermomechanischen Eigenschaften bekannt, chemische Vernetzung führt aber meist zu starren Strukturen. Nun wird gezeigt, dass auch duroplastisches Polyurethan mit Formgedächtnis durch eine topologische Netzwerk‐Reorganisation, die durch Transcarbamoylierung ausgelöst wird, permanent umgeformt werden kann („Plastizität”). |
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ISSN: | 0044-8249 1521-3757 |
DOI: | 10.1002/ange.201602847 |