A biodegradable and biocompatible electrospun scaffold with shape memory behavior in the physiological temperature range is here presented. It was obtained starting from a specifically designed, biobased PLLA-based triblock copolymer, where the central block is poly(propylene azelate-co-propylene sebacate) (P(PAz60PSeb40)) random copolymer. Shape memory properties are determined by the contemporary presence of the low melting crystals of the P(PAz60PSeb40) block, acting as switching segment, and of the high melting crystal phase of PLLA blocks, acting as physical network. It is demonstrated that a straightforward annealing process applied to the crystal phase of the switching element gives the possibility to tune the shape recovery temperat...
To explore the safe use of thermal-responsive shape memory polymers (SMPs) as minimally invasive tis...
Multifunctional fibrous scaffolds, which combine the capabilities of biomimicry to the native tissue...
Preparing porous biodegradable structures from shape memory polymers can combine the structure-defin...
A biodegradable and biocompatible electrospun scaffold with shape memory behavior in the physiologic...
A biodegradable and biocompatible electrospun scaffold with shape memory behavior in the physiologic...
From the point of better biocompatibility and sustainability, biobased shape memory polymers (SMPs) ...
This paper investigates the shape memory capabilities of semicrystalline networks, focusing the atte...
The thermally activated shape memory response of polymeric materials results from a combination of t...
This paper investigates the shape memory capabilities of semicryst. networks, focusing the attention...
This paper investigates the shape memory capabilities of semicrystalline networks, focusing the atte...
Smart materials that can respond to external stimuli are of widespread interest in biomedical scienc...
Shape Memory Polymers (SMPs) are a class of smart materials, capable of significant shape variations...
A research on the thermally-activated shape memory behavior of electrospun nanofibers based on polyl...
The presented paper concerns scientific research on processing a poly(lactide-co-glycolide-co-trimet...
In this study, covalently cross-linked network strategy has been applied to prepare new triple-shape...
To explore the safe use of thermal-responsive shape memory polymers (SMPs) as minimally invasive tis...
Multifunctional fibrous scaffolds, which combine the capabilities of biomimicry to the native tissue...
Preparing porous biodegradable structures from shape memory polymers can combine the structure-defin...
A biodegradable and biocompatible electrospun scaffold with shape memory behavior in the physiologic...
A biodegradable and biocompatible electrospun scaffold with shape memory behavior in the physiologic...
From the point of better biocompatibility and sustainability, biobased shape memory polymers (SMPs) ...
This paper investigates the shape memory capabilities of semicrystalline networks, focusing the atte...
The thermally activated shape memory response of polymeric materials results from a combination of t...
This paper investigates the shape memory capabilities of semicryst. networks, focusing the attention...
This paper investigates the shape memory capabilities of semicrystalline networks, focusing the atte...
Smart materials that can respond to external stimuli are of widespread interest in biomedical scienc...
Shape Memory Polymers (SMPs) are a class of smart materials, capable of significant shape variations...
A research on the thermally-activated shape memory behavior of electrospun nanofibers based on polyl...
The presented paper concerns scientific research on processing a poly(lactide-co-glycolide-co-trimet...
In this study, covalently cross-linked network strategy has been applied to prepare new triple-shape...
To explore the safe use of thermal-responsive shape memory polymers (SMPs) as minimally invasive tis...
Multifunctional fibrous scaffolds, which combine the capabilities of biomimicry to the native tissue...
Preparing porous biodegradable structures from shape memory polymers can combine the structure-defin...