It remains challenging to prepare wearable strain and pressure sensors with excellent mechanical properties, ultra‐high flexibility and sensitivity. Electrically conductive graphene platelets (GnPs) with high structural integrity are used in making a composite film fabricated using robust fabrication techniques. The gauge factor for the strain is up to 100 at 0%‐5% strain and 50 at 5%‐30% strain, and the sensitivity to pressure is 2.7×10‐2 kPa‐1 between 0 and 10 kPa and 1.5×10‐4 kPa‐1 between 300 and 1000 kPa. In addition, the flexible sensor demonstrates good repeatability and durability after 1000 cycles of tensile and compression tests. The flexible sensor has fast response ability and a wide operating temperature range, suggesting the e...
Promoted by the demand for wearable devices, graphene has been proved to be a promising material for...
Flexible strain sensors have attracted considerable attention due to their applications in wearable ...
In this work, graphene has been utilized as the sensing material for the development of a highly-sen...
This work developed a facile approach to fabricate highly sensitive and flexible polyurethane/graphe...
Flexible and stretchable multifunctional electronics is expected to be one of the most active resear...
Advanced functional composites have attracted a great attention for fabricating flexible devices. In...
Wearable mechanical sensors have the potential to transform healthcare by enabling patient monitorin...
In this work, new highly sensitive graphene-based flexible strain sensors are produced. In particula...
Flexible strain sensors based on epoxy/graphene composite film with long molecular weight curing age...
In this work, new highly sensitive graphene-based flexible strain sensors are produced. In particula...
Monitoring of human bodily motion requires wearable sensors that can detect position, velocity and a...
Monitoring of human bodily motion requires wearable sensors that can detect position, velocity and a...
Monitoring of human bodily motion requires wearable sensors that can detect position, velocity and a...
Flexible, lightweight sensors with a wide strain-sensing range are showing increasing significance i...
Recently, various piezoresistive composites with good flexibility have been developed as sensing mat...
Promoted by the demand for wearable devices, graphene has been proved to be a promising material for...
Flexible strain sensors have attracted considerable attention due to their applications in wearable ...
In this work, graphene has been utilized as the sensing material for the development of a highly-sen...
This work developed a facile approach to fabricate highly sensitive and flexible polyurethane/graphe...
Flexible and stretchable multifunctional electronics is expected to be one of the most active resear...
Advanced functional composites have attracted a great attention for fabricating flexible devices. In...
Wearable mechanical sensors have the potential to transform healthcare by enabling patient monitorin...
In this work, new highly sensitive graphene-based flexible strain sensors are produced. In particula...
Flexible strain sensors based on epoxy/graphene composite film with long molecular weight curing age...
In this work, new highly sensitive graphene-based flexible strain sensors are produced. In particula...
Monitoring of human bodily motion requires wearable sensors that can detect position, velocity and a...
Monitoring of human bodily motion requires wearable sensors that can detect position, velocity and a...
Monitoring of human bodily motion requires wearable sensors that can detect position, velocity and a...
Flexible, lightweight sensors with a wide strain-sensing range are showing increasing significance i...
Recently, various piezoresistive composites with good flexibility have been developed as sensing mat...
Promoted by the demand for wearable devices, graphene has been proved to be a promising material for...
Flexible strain sensors have attracted considerable attention due to their applications in wearable ...
In this work, graphene has been utilized as the sensing material for the development of a highly-sen...