peer reviewedElectrically triggered shape memory polymers efficiency has been proven by numerous studies making them promising novel structural materials for high-end applications. In this field, poly(ε-caprolactone) covalent adaptable networks (PCL-CAN) are particularly appealing since they benefit from excellent shape mem- ory (SM) properties combined with network reconfiguration making easy the design of self-actuated devices of complex shape. Preparation of conducting PCL-CAN networks by melt blending multi-walled carbon nanotubes (MWCNTs) with four-arm star-shaped PCL end-capped with maleimide and furan groups is here inves- tigated. The conventional tensile tester and dynamic mechanical analysis demonstrated the reinforcement of the c...
Shape memory polymers (SMPs) are materials that are able to change their shape from a temporary shap...
Shape-memory polymers (SMPs) are remarkable stimuli-responsive materials able to switch from one sta...
Shape-memory polymers (SMPs) are remarkable materials able to switch from a temporary shape to thei...
peer reviewedShape memory polymers (SMPs) are smart materials able to switch from a temporary shape...
Both shape memory and self-healing polymers have received significant attention from the materials s...
peer reviewedThe synthesis and properties of hybrid poly(e-caprolactone) (PCL)–poly(ethylene oxide) ...
peer reviewedThe present experimental research consists on the detailed thermo-electro-mechanical ch...
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 semicryst. networks, focusing the attention...
Poly(ε-caprolactone) (PCL), a semi-crystalline polymer, is one of the most widely studied polymers f...
This contribution aims at reporting a new concept for the preparation of well defined and recyclable...
This paper investigates the shape memory capabilities of semicrystalline networks, focusing the atte...
Crosslinking of thermoplastics is a versatile method to create crystallizable polymer networks, whic...
Shape-memory polymers (SMPs) are remarkable stimuli-responsive materials able to switch from one sta...
Shape memory polymers (SMPs) are materials that are able to change their shape from a temporary shap...
Shape-memory polymers (SMPs) are remarkable stimuli-responsive materials able to switch from one sta...
Shape-memory polymers (SMPs) are remarkable materials able to switch from a temporary shape to thei...
peer reviewedShape memory polymers (SMPs) are smart materials able to switch from a temporary shape...
Both shape memory and self-healing polymers have received significant attention from the materials s...
peer reviewedThe synthesis and properties of hybrid poly(e-caprolactone) (PCL)–poly(ethylene oxide) ...
peer reviewedThe present experimental research consists on the detailed thermo-electro-mechanical ch...
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 semicryst. networks, focusing the attention...
Poly(ε-caprolactone) (PCL), a semi-crystalline polymer, is one of the most widely studied polymers f...
This contribution aims at reporting a new concept for the preparation of well defined and recyclable...
This paper investigates the shape memory capabilities of semicrystalline networks, focusing the atte...
Crosslinking of thermoplastics is a versatile method to create crystallizable polymer networks, whic...
Shape-memory polymers (SMPs) are remarkable stimuli-responsive materials able to switch from one sta...
Shape memory polymers (SMPs) are materials that are able to change their shape from a temporary shap...
Shape-memory polymers (SMPs) are remarkable stimuli-responsive materials able to switch from one sta...
Shape-memory polymers (SMPs) are remarkable materials able to switch from a temporary shape to thei...