A new sensor made of a vinyl-ester polymer composite filled with multilayer graphene nanoplatelets (MLG) is produced through an innovative capillary rise method for application in strain sensing and structural health monitoring. The new sensor is characterized by high stability of the piezoresistive response under quasi-static consecutive loading/unloading cycles and monotonic tests. This is due to the peculiarity of the fabrication process that ensures a smooth and clean surface of the sensor, without the presence of filler agglomerates acting as micro- or macro-sized defects in the composite
Innovative graphene-based sensors are produced through the spray deposition of multilayer graphene s...
Wearable mechanical sensors have the potential to transform healthcare by enabling patient monitorin...
The development of embedded sensors based on a structural thermosetting epoxy resin reinforced with ...
Conductive nanostructured composites combining an epoxy polymer and graphene have been explored for ...
Copyright © 2022 The Author(s). Composite structures are attracting more interest due to their outst...
Now a days advanced composites having superior physical and mechanical properties are \ud being deve...
Recently, graphene-polymer composites gained a central role in advanced stress and strain sensing. A...
Recently, graphene-polymer composites gained a central role in advanced stress and strain sensing. A...
Nanocarbonaceous materials with specific geometries and physicochemical properties allow the develop...
A study concerning the development of embedded sensors by using polymer composite filled with carbon...
AbstractIn polymer composites and nanocomposites with conducting fillers, conductivity changes signi...
Advanced functional composites have attracted a great attention for fabricating flexible devices. In...
The demand for high performance multifunctional wearable devices is more and more pushing towards th...
Advanced nanoelectromechanical systems made from polymer dielectrics deposited onto 2D-nanomaterials...
A robust piezo-resistive nanocomposite flexible sensor has been developed using an innovative combin...
Innovative graphene-based sensors are produced through the spray deposition of multilayer graphene s...
Wearable mechanical sensors have the potential to transform healthcare by enabling patient monitorin...
The development of embedded sensors based on a structural thermosetting epoxy resin reinforced with ...
Conductive nanostructured composites combining an epoxy polymer and graphene have been explored for ...
Copyright © 2022 The Author(s). Composite structures are attracting more interest due to their outst...
Now a days advanced composites having superior physical and mechanical properties are \ud being deve...
Recently, graphene-polymer composites gained a central role in advanced stress and strain sensing. A...
Recently, graphene-polymer composites gained a central role in advanced stress and strain sensing. A...
Nanocarbonaceous materials with specific geometries and physicochemical properties allow the develop...
A study concerning the development of embedded sensors by using polymer composite filled with carbon...
AbstractIn polymer composites and nanocomposites with conducting fillers, conductivity changes signi...
Advanced functional composites have attracted a great attention for fabricating flexible devices. In...
The demand for high performance multifunctional wearable devices is more and more pushing towards th...
Advanced nanoelectromechanical systems made from polymer dielectrics deposited onto 2D-nanomaterials...
A robust piezo-resistive nanocomposite flexible sensor has been developed using an innovative combin...
Innovative graphene-based sensors are produced through the spray deposition of multilayer graphene s...
Wearable mechanical sensors have the potential to transform healthcare by enabling patient monitorin...
The development of embedded sensors based on a structural thermosetting epoxy resin reinforced with ...