Flexible strain sensor has wide applications in wearable devices and human–computer interaction. These sensors exhibit a flexible performance, which makes the structure of the device adapt to a wide range of application scenarios. This work proposes a low-cost and accurate direct writing method to fabricate a three-dimensional graphene/carbon nanotube strain sensor by using prepared printing ink with good dispersion, extruding ordered lamellae, and controlling porous aerogel structure. The morphology of the prepared three-dimensional porous aerogel was controlled with the ice template method. The strain sensor could be obtained by encapsulating the PDMS precursor, which shows high stretchability with a sensitivity of 18.55 at a 20% tensile ...
A stable and highly sensitive graphene/hydrogel strain sensor is designed by introducing glycerol as...
Developing sensors for monitoring physiological parameters such as temperature and strain for point ...
Studying the strain of materials on a small scale is very important for applications in strain senso...
A direct-write method to fabricate a strain sensor directly on a structure of interest is reported. ...
Strain sensors with high elastic limit and high sensitivity are required to meet the rising demand f...
Strain sensors with high elastic limit and high sensitivity are required to meet the rising demand f...
Strain sensors with high elastic limit and high sensitivity are required to meet the rising demand f...
In this research, we present the development of 3D printed, highly stretchable and sensitive strain ...
Strain sensors that are capable of monitoring complex human motions with high accuracy are highly de...
Strain sensors that are capable of monitoring complex human motions with high accuracy are highly de...
Printed strain sensors have promising potential as a human–machine interface (HMI) for health-monito...
Wearable systems are becoming highly attractive in different application areas. Recently, particular...
Ultralight and highly flexible aerogel sensors, composed of reduced graphene oxide cross-linked by s...
Because of their outstanding electrical and mechanical properties, graphene strain sensors have attr...
We introduce a simple method to fabricate a highly flexible resistive-type strain sensor composed of...
A stable and highly sensitive graphene/hydrogel strain sensor is designed by introducing glycerol as...
Developing sensors for monitoring physiological parameters such as temperature and strain for point ...
Studying the strain of materials on a small scale is very important for applications in strain senso...
A direct-write method to fabricate a strain sensor directly on a structure of interest is reported. ...
Strain sensors with high elastic limit and high sensitivity are required to meet the rising demand f...
Strain sensors with high elastic limit and high sensitivity are required to meet the rising demand f...
Strain sensors with high elastic limit and high sensitivity are required to meet the rising demand f...
In this research, we present the development of 3D printed, highly stretchable and sensitive strain ...
Strain sensors that are capable of monitoring complex human motions with high accuracy are highly de...
Strain sensors that are capable of monitoring complex human motions with high accuracy are highly de...
Printed strain sensors have promising potential as a human–machine interface (HMI) for health-monito...
Wearable systems are becoming highly attractive in different application areas. Recently, particular...
Ultralight and highly flexible aerogel sensors, composed of reduced graphene oxide cross-linked by s...
Because of their outstanding electrical and mechanical properties, graphene strain sensors have attr...
We introduce a simple method to fabricate a highly flexible resistive-type strain sensor composed of...
A stable and highly sensitive graphene/hydrogel strain sensor is designed by introducing glycerol as...
Developing sensors for monitoring physiological parameters such as temperature and strain for point ...
Studying the strain of materials on a small scale is very important for applications in strain senso...