This work demonstrates the application of electrospun single and bundled carbon nanofibers (CNFs) as piezoresistive sensing elements in flexible and ultralightweight sensors. Material, electrical, and nanomechanical characterizations were conducted on the CNFs to understand the effect of the critical synthesis parameter—the pyrolyzation temperature on the morphological, structural, and electrical properties. The mechanism of conductive path change under the influence of external stress was hypothesized to explain the piezoresistive behavior observed in the CNF bundles. Quasi-static tensile strain characterization of the CNF bundle-based flexible strain sensor showed a linear response with an average gauge factor of 11.14 (for tensile strain...
Highly flexible and deformable electrically conductive materials are vital for the emerging field of...
Electrospun nanofiber mats have been used as sensing elements to construct piezoresistive devices du...
In this paper, carbon nanofibers (CNFs) with high aspect ratio were dispersed into epoxy matrix via ...
This work demonstrates the application of electrospun single and bundled carbon nanofibers (CNFs) as...
Carbon nanopapers made of carbon nanotubes (CNTs) or carbon nanofibers (CNFs), possess unique electr...
This paper deals with the production of nanofibrous piezoelectric sensors for flexible applications....
In this work, we report a class of wearable, stitchable and sensitive carbon nanofiber (CNF)-polydim...
The piezoresistive response of epoxy/vapour grown carbon nanofiber composites prepared by four diffe...
Abstract: polymeric materials have been replacing other materials in various applications, from stru...
Flexible strain sensors are fundamental devices for application in human body monitoring in areas ra...
Polymeric materials have been replacing other materials in various applications, from structural to ...
Mechanical strain sensing is ubiquitous, found in applications such as heart rate monitoring, analys...
The development of electronic skins and wearable devices is rapidly growing due to their broad appli...
Click on the DOI link to access the article (may not be free).Electrospun polyacrylonitrile (PAN) na...
This research involved fabricating Polyacrylonitrile (PAN) nanofibers using the NF-500 electrospinni...
Highly flexible and deformable electrically conductive materials are vital for the emerging field of...
Electrospun nanofiber mats have been used as sensing elements to construct piezoresistive devices du...
In this paper, carbon nanofibers (CNFs) with high aspect ratio were dispersed into epoxy matrix via ...
This work demonstrates the application of electrospun single and bundled carbon nanofibers (CNFs) as...
Carbon nanopapers made of carbon nanotubes (CNTs) or carbon nanofibers (CNFs), possess unique electr...
This paper deals with the production of nanofibrous piezoelectric sensors for flexible applications....
In this work, we report a class of wearable, stitchable and sensitive carbon nanofiber (CNF)-polydim...
The piezoresistive response of epoxy/vapour grown carbon nanofiber composites prepared by four diffe...
Abstract: polymeric materials have been replacing other materials in various applications, from stru...
Flexible strain sensors are fundamental devices for application in human body monitoring in areas ra...
Polymeric materials have been replacing other materials in various applications, from structural to ...
Mechanical strain sensing is ubiquitous, found in applications such as heart rate monitoring, analys...
The development of electronic skins and wearable devices is rapidly growing due to their broad appli...
Click on the DOI link to access the article (may not be free).Electrospun polyacrylonitrile (PAN) na...
This research involved fabricating Polyacrylonitrile (PAN) nanofibers using the NF-500 electrospinni...
Highly flexible and deformable electrically conductive materials are vital for the emerging field of...
Electrospun nanofiber mats have been used as sensing elements to construct piezoresistive devices du...
In this paper, carbon nanofibers (CNFs) with high aspect ratio were dispersed into epoxy matrix via ...