The present paper studies the electrical and shape-memory behavior of self-assembled carbon nanofiber (CNF) nanopaper incorporated with shape-memory polymer (SMP). The morphology and structure of the self-assembled nanopapers were characterized with scanning electron microscopy (SEM). A continuous and compact network was observed from the SEM images, which indicates that the CNF nanopaper could have highly conductive properties. The electrical conductivity of the CNF nanopaper was measured by the four-point probe method and its temperature coefficient effect was studied. Finally, the actuation of SMP was demonstrated by the electrical resistive heating of the CNF nanopaper
Shape memory polymers (SMPs) are becoming one of the most popular smart materials due their fantasti...
This work studies the synergistic effect of carbon nanofiber (CNF) and sub-micro filamentary nickel ...
A novel shape-memory nanocomposite that exhibits electrical actuation capabilities was fabricated by...
The present paper studies the electrical and shape-memory behavior of self-assembled carbon nanofibe...
A conductive carbon nanofiber (CNF) paper is described for the actuation of shape recovery of a shap...
To electrically activate the shape recovery in a styrenebased shape-memory polymer (SMP) by coating ...
The present work studies the synergistic effect of carbon nanofiber (CNF) and carbon nanopaper on th...
This study presents an effective approach to significantly improve the electrical properties of shap...
This study presents an effective approach to significantly improve the electrical properties of shap...
A unique concept of shape-memory polymer (SMP) nanocomposites making up of carbon nanofiber paper wa...
Many substantial works have been done on the shape recovery of shape memory polymer blended with con...
Shape-memory polymers (SMP) composites have attracted significant attention from both industrial and...
Shape memory polymers (SMPs) are one of the most popular smart materials due to their fantastic prop...
A nanopaper that exhibits excellent electrical and electromagnetic performance is fabricated by inco...
This work studies the synergistic effect of carbon nanofiber (CNF) and sub-micro filamentary nickel ...
Shape memory polymers (SMPs) are becoming one of the most popular smart materials due their fantasti...
This work studies the synergistic effect of carbon nanofiber (CNF) and sub-micro filamentary nickel ...
A novel shape-memory nanocomposite that exhibits electrical actuation capabilities was fabricated by...
The present paper studies the electrical and shape-memory behavior of self-assembled carbon nanofibe...
A conductive carbon nanofiber (CNF) paper is described for the actuation of shape recovery of a shap...
To electrically activate the shape recovery in a styrenebased shape-memory polymer (SMP) by coating ...
The present work studies the synergistic effect of carbon nanofiber (CNF) and carbon nanopaper on th...
This study presents an effective approach to significantly improve the electrical properties of shap...
This study presents an effective approach to significantly improve the electrical properties of shap...
A unique concept of shape-memory polymer (SMP) nanocomposites making up of carbon nanofiber paper wa...
Many substantial works have been done on the shape recovery of shape memory polymer blended with con...
Shape-memory polymers (SMP) composites have attracted significant attention from both industrial and...
Shape memory polymers (SMPs) are one of the most popular smart materials due to their fantastic prop...
A nanopaper that exhibits excellent electrical and electromagnetic performance is fabricated by inco...
This work studies the synergistic effect of carbon nanofiber (CNF) and sub-micro filamentary nickel ...
Shape memory polymers (SMPs) are becoming one of the most popular smart materials due their fantasti...
This work studies the synergistic effect of carbon nanofiber (CNF) and sub-micro filamentary nickel ...
A novel shape-memory nanocomposite that exhibits electrical actuation capabilities was fabricated by...