The fabrication of piezoresistive strain sensor with unified and balanced properties of high sensitivity, stretchability, and durability still remains a great challenge due to the oversimplified thin film structure of strain sensor. In this work, a high-performance strain sensor based on conductive poly(styrene-butadiene-styrene)/carbon nanotube fiber (SBS/CNT fiber, SCF) was prepared via wet-spinning. Then, the morphology, mechanical property, piezoresistive performance and sensing mechanism of the SCF-based sensors were systematically investigated. The resultant SCF-based sensors simultaneously demonstrated superior sensitivity (with a gauge factor of 175 under 50% deformation), wide workable range (>260%) and excellent durability due to ...
Most of the reported flexible strain sensors can only normally sense external stretch in a quite nar...
The increasing demand for wearable electronic devices has made the development of highly elastic str...
High stretchability and sensitivity are the major desired requirements of strain sensors for wearabl...
The fabrication of piezoresistive strain sensor with unified and balanced properties of high sensiti...
Although flexible polymer composites based strain sensors have been widely studied, it is still a ch...
In recent years, nanocomposites based on various nano-scale carbon fillers, such as carbon nanotubes...
A series of 1-D polymer ternary composites based on poly(styrene-butadiene-styrene) (SBS)/carbon nan...
Most of the reported flexible strain sensors can only normally sense external stretch in a quite nar...
Fiber-based strain sensors are considered to be an important part of smart wearables due to their fl...
Highly flexible and stretchable sensors are becoming increasingly widespread due to their versatile ...
Compared with traditional conductive fillers, carbon nanotubes (CNTs) have unique advantages, i.e., ...
Nowadays, smart composites based on different nano-scale carbon fillers, such as carbon nanotubes (C...
Here, the piezoresistive behavior and the underlying sensing mechanism of carbon nanotubes (CNTs) an...
Rapid growth of personal electronics with concurrent research into telerehabilitation solutions disc...
We present a strain gauge that uses a carbon nanotube (CNT) forest, partially embedded in a Parylene...
Most of the reported flexible strain sensors can only normally sense external stretch in a quite nar...
The increasing demand for wearable electronic devices has made the development of highly elastic str...
High stretchability and sensitivity are the major desired requirements of strain sensors for wearabl...
The fabrication of piezoresistive strain sensor with unified and balanced properties of high sensiti...
Although flexible polymer composites based strain sensors have been widely studied, it is still a ch...
In recent years, nanocomposites based on various nano-scale carbon fillers, such as carbon nanotubes...
A series of 1-D polymer ternary composites based on poly(styrene-butadiene-styrene) (SBS)/carbon nan...
Most of the reported flexible strain sensors can only normally sense external stretch in a quite nar...
Fiber-based strain sensors are considered to be an important part of smart wearables due to their fl...
Highly flexible and stretchable sensors are becoming increasingly widespread due to their versatile ...
Compared with traditional conductive fillers, carbon nanotubes (CNTs) have unique advantages, i.e., ...
Nowadays, smart composites based on different nano-scale carbon fillers, such as carbon nanotubes (C...
Here, the piezoresistive behavior and the underlying sensing mechanism of carbon nanotubes (CNTs) an...
Rapid growth of personal electronics with concurrent research into telerehabilitation solutions disc...
We present a strain gauge that uses a carbon nanotube (CNT) forest, partially embedded in a Parylene...
Most of the reported flexible strain sensors can only normally sense external stretch in a quite nar...
The increasing demand for wearable electronic devices has made the development of highly elastic str...
High stretchability and sensitivity are the major desired requirements of strain sensors for wearabl...