Both shape memory and self-healing polymers have received significant attention from the materials science community. The former, for their application as actuators, self-deployable structures, and medical devices; and the latter, for extending the lifetime of polymeric products. Both effects can be stimulated by heat, which makes resistive heating a practical approach to trigger these effects. Here we show a conductive polyketone polymer and carbon nanotube composite with cross-links based on the thermo-reversible furan/maleimide Diels–Alder chemistry. This approach resulted in products with efficient electroactive shape memory effect, shape reprogrammability, and self-healing. They exhibit electroactive shape memory behavior with recovery...
Here the supporting figures and raw and process data linked to the manuscript on electroactive self-...
In this work, we prepared electrically conductive self-healing nanocomposites. The material consists...
In this work, we prepared electrically conductive self-healing nanocomposites. The material consists...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Thermo-reversibly crosslinked polymers (TRCPs) are quite attractive due to their self-healing capabi...
Thermo-reversibly crosslinked polymers (TRCPs) are quite attractive due to their self-healing capabi...
Thermo-reversibly crosslinked polymers (TRCPs) are quite attractive due to their self-healing capabi...
New shape memory polymers with self-healing behavior are obtained by thermoreversible Diels–Alder (D...
Here the supporting figures and raw and process data linked to the manuscript on electroactive self-...
Here the supporting figures and raw and process data linked to the manuscript on electroactive self-...
Here the supporting figures and raw and process data linked to the manuscript on electroactive self-...
In this work, we prepared electrically conductive self-healing nanocomposites. The material consists...
In this work, we prepared electrically conductive self-healing nanocomposites. The material consists...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Both shape memory and self-healing polymers have received significant attention from the materials s...
Thermo-reversibly crosslinked polymers (TRCPs) are quite attractive due to their self-healing capabi...
Thermo-reversibly crosslinked polymers (TRCPs) are quite attractive due to their self-healing capabi...
Thermo-reversibly crosslinked polymers (TRCPs) are quite attractive due to their self-healing capabi...
New shape memory polymers with self-healing behavior are obtained by thermoreversible Diels–Alder (D...
Here the supporting figures and raw and process data linked to the manuscript on electroactive self-...
Here the supporting figures and raw and process data linked to the manuscript on electroactive self-...
Here the supporting figures and raw and process data linked to the manuscript on electroactive self-...
In this work, we prepared electrically conductive self-healing nanocomposites. The material consists...
In this work, we prepared electrically conductive self-healing nanocomposites. The material consists...