Advanced wearable strain sensors with high sensitivity and stretchability are an essential component of flexible and soft electronic devices. Conventional metal- and semiconductor-based strain sensors are rigid, fragile, and opaque, restricting their applications in wearable electronics. Graphene-based percolative structures possess high flexibility and transparency but lack high sensitivity and stretchability. Inspired by the highly flexible spider web architecture, we propose semitransparent, ultrasensitive, and wearable strain sensors made from an elastomer-filled graphene woven fabric (E-GWF) for monitoring human physiological signals. The highly flexible elastomer microskeleton and the hierarchical structure of a graphene tube offer th...
Monitoring of human bodily motion requires wearable sensors that can detect position, velocity and a...
Stretchable strain sensors have promising applications in health monitoring and human motion detecti...
The increasing demand of electronic devices for physical motion detection has encouraged the develop...
Advanced wearable strain sensors with high sensitivity and stretchability are an essential component...
Because of their outstanding electrical and mechanical properties, graphene strain sensors have attr...
The use of nanomaterials for strain sensors has attracted attention due to their unique electromecha...
Nanomaterials serve as promising candidates for strain sensing due to unique electromechanical prope...
Nanomaterials serve as promising candidates for strain sensing due to unique electromechanical prope...
Constructing flexible, high-sensitivity strain sensors with large working ranges is an urgent task i...
Here, we report a new type of strain sensors consisting of vertical graphene nanosheets (VGNs) with ...
Recently, wearable devices have been attracting significantly increased interest in human motion det...
Constructing flexible, high-sensitivity strain sensors with large working ranges is an urgent task i...
Stretchable strain sensors offer great potential for diverse applications in modern electronics. How...
Flexible, stretchable, wearable, and stable electronic materials are widely studied, owing to their ...
Monitoring of human bodily motion requires wearable sensors that can detect position, velocity and a...
Stretchable strain sensors have promising applications in health monitoring and human motion detecti...
The increasing demand of electronic devices for physical motion detection has encouraged the develop...
Advanced wearable strain sensors with high sensitivity and stretchability are an essential component...
Because of their outstanding electrical and mechanical properties, graphene strain sensors have attr...
The use of nanomaterials for strain sensors has attracted attention due to their unique electromecha...
Nanomaterials serve as promising candidates for strain sensing due to unique electromechanical prope...
Nanomaterials serve as promising candidates for strain sensing due to unique electromechanical prope...
Constructing flexible, high-sensitivity strain sensors with large working ranges is an urgent task i...
Here, we report a new type of strain sensors consisting of vertical graphene nanosheets (VGNs) with ...
Recently, wearable devices have been attracting significantly increased interest in human motion det...
Constructing flexible, high-sensitivity strain sensors with large working ranges is an urgent task i...
Stretchable strain sensors offer great potential for diverse applications in modern electronics. How...
Flexible, stretchable, wearable, and stable electronic materials are widely studied, owing to their ...
Monitoring of human bodily motion requires wearable sensors that can detect position, velocity and a...
Stretchable strain sensors have promising applications in health monitoring and human motion detecti...
The increasing demand of electronic devices for physical motion detection has encouraged the develop...