Polymers capable of reversible “two-way” shape memory behaviour are of great interest for applications where reversible actuation is demanded, and semicrystalline crosslinked systems have been indicated as an interesting solution towards this end. In this work we have explored the two-way shape memory response of semicrystalline poly(ε-caprolactone)-based polymer networks, prepared with various macromolecular architectures starting from linear, three- and four-arm star poly(ε-caprolactone) func- tionalized with methacrylate end-groups. All the materials have revealed two-way shape memory capabilities. The effect arises from an elongation process that takes place when the material is cooled under an applied load below the crystallization tem...
The thermally activated shape memory response of polymeric materials results from a combination of t...
This paper investigates the shape memory capabilities of semicrystalline networks, focusing the atte...
This paper investigates the shape memory capabilities of semicrystalline networks, focusing the atte...
Polymers capable of reversible \u201ctwo-way\u201d shape memory behaviour are of great interest for ...
Polymers capable of reversible "two-way" shape memory behaviour are of great interest for applicatio...
The "two-way" shape memory response of semicrystalline networks was studied on poly(epsilon-caprolac...
The two-way shape memory behaviour of semicrystalline networks was investigated on systems based on ...
The two-way shape memory behaviour of semicrystalline networks was investigated on systems based on ...
The "two-way" shape memory response of semicrystalline networks was studied on poly(epsilon-caprolac...
In this work we have explored the shape memory capabilities of a novel type of covalently cross-link...
In this work we have explored the shape memory capabilities of a novel type of covalently cross-link...
In this work we have explored the shape memory capabilities of a novel type of covalently cross-link...
The "two-way" shape memory response of semicrystalline networks was studied on poly(epsilon-caprolac...
In this work, poly(ethylene glycol) (PEG)/poly(ε-caprolactone) (PCL) semicrystalline networks were p...
The thermally activated shape memory response of polymeric materials results from a combination of t...
This paper investigates the shape memory capabilities of semicrystalline networks, focusing the atte...
This paper investigates the shape memory capabilities of semicrystalline networks, focusing the atte...
Polymers capable of reversible \u201ctwo-way\u201d shape memory behaviour are of great interest for ...
Polymers capable of reversible "two-way" shape memory behaviour are of great interest for applicatio...
The "two-way" shape memory response of semicrystalline networks was studied on poly(epsilon-caprolac...
The two-way shape memory behaviour of semicrystalline networks was investigated on systems based on ...
The two-way shape memory behaviour of semicrystalline networks was investigated on systems based on ...
The "two-way" shape memory response of semicrystalline networks was studied on poly(epsilon-caprolac...
In this work we have explored the shape memory capabilities of a novel type of covalently cross-link...
In this work we have explored the shape memory capabilities of a novel type of covalently cross-link...
In this work we have explored the shape memory capabilities of a novel type of covalently cross-link...
The "two-way" shape memory response of semicrystalline networks was studied on poly(epsilon-caprolac...
In this work, poly(ethylene glycol) (PEG)/poly(ε-caprolactone) (PCL) semicrystalline networks were p...
The thermally activated shape memory response of polymeric materials results from a combination of t...
This paper investigates the shape memory capabilities of semicrystalline networks, focusing the atte...
This paper investigates the shape memory capabilities of semicrystalline networks, focusing the atte...