Thermally induced shape-memory polymers are materials based on exploiting one or more phase transitions, such as glass, melting, or clearing transition, to trigger a shape-memory effect. Among shape-memory polymers, liquid crystalline elastomers are considered as very interesting candidates, thanks to the synergistic effect of the ordered liquid crystalline phase and the polymeric network on their programming and recovering behavior. Here, the synthesis of new shape-memory smectic epoxy-based elastomers incorporating multiwalled carbon nanotubes is reported. The realized materials show two types of shape-memory behavior that can be selectively actuated by choosing the appropriate thermal recovery conditions. The surface modificatio...
Liquid-crystalline elastomer (LCE) nanocomposites exhibiting shape memory properties were prepared b...
Liquid-crystalline elastomer (LCE) nanocomposites exhibiting shape memory properties were prepared b...
Shape-memory polymers tend to present rigid behavior at ambient temperature, being unable to deform ...
Thermally induced shape-memory polymers are materials based on exploiting one or more phase transit...
Thermally induced shape-memory polymers are materials based on exploiting one or more phase transit...
Thermally triggered shape-memory polymers are materials based on exploiting one or more phase transi...
In this work, shape memory nanocomposites were prepared and characterized. The polymer matrix consis...
In this work, the incorporation of multiwalled carbon nanotubes (MWCNT) into epoxy-based elastomers ...
In this work, the incorporation of multiwalled carbon nanotubes (MWCNT) into epoxy-based elastomers ...
In this work, the incorporation of multiwalled carbon nanotubes (MWCNT) into epoxy-based elastomers ...
In this paper, epoxy-based shape-memory liquid-crystalline lightly cross-linked networks (LCN) are s...
In this paper, epoxy-based shape-memory liquid-crystalline lightly cross-linked networks (LCN) are s...
In this paper, epoxy-based shape-memory liquid crystalline lightly cross-linked networks (LCN) are s...
In this paper, epoxy-based shape-memory liquid crystalline lightly cross-linked networks (LCN) are s...
Effectively improving the mechanical properties and thermal resistance of epoxy shape-memory polymer...
Liquid-crystalline elastomer (LCE) nanocomposites exhibiting shape memory properties were prepared b...
Liquid-crystalline elastomer (LCE) nanocomposites exhibiting shape memory properties were prepared b...
Shape-memory polymers tend to present rigid behavior at ambient temperature, being unable to deform ...
Thermally induced shape-memory polymers are materials based on exploiting one or more phase transit...
Thermally induced shape-memory polymers are materials based on exploiting one or more phase transit...
Thermally triggered shape-memory polymers are materials based on exploiting one or more phase transi...
In this work, shape memory nanocomposites were prepared and characterized. The polymer matrix consis...
In this work, the incorporation of multiwalled carbon nanotubes (MWCNT) into epoxy-based elastomers ...
In this work, the incorporation of multiwalled carbon nanotubes (MWCNT) into epoxy-based elastomers ...
In this work, the incorporation of multiwalled carbon nanotubes (MWCNT) into epoxy-based elastomers ...
In this paper, epoxy-based shape-memory liquid-crystalline lightly cross-linked networks (LCN) are s...
In this paper, epoxy-based shape-memory liquid-crystalline lightly cross-linked networks (LCN) are s...
In this paper, epoxy-based shape-memory liquid crystalline lightly cross-linked networks (LCN) are s...
In this paper, epoxy-based shape-memory liquid crystalline lightly cross-linked networks (LCN) are s...
Effectively improving the mechanical properties and thermal resistance of epoxy shape-memory polymer...
Liquid-crystalline elastomer (LCE) nanocomposites exhibiting shape memory properties were prepared b...
Liquid-crystalline elastomer (LCE) nanocomposites exhibiting shape memory properties were prepared b...
Shape-memory polymers tend to present rigid behavior at ambient temperature, being unable to deform ...