Flexible and stretchable multifunctional electronics is expected to be one of the most active research areas in the next decade. In this work, we fabricate graphene based flexible film sensors using two different matrices; polydimethylsiloxane (PDMS) and epoxy. A graphene platelet (GnP) refers to a nanosheet that consists of a few stacked graphene layers, mostly below ~10 nm in thickness. The mechanical, electrical and thermal properties of the fabricated composite films were evaluated. The morphology showed a good dispersibility of GnPs into the PDMS and epoxy matrices. The percolation threshold for GnP/PDMS and GnP/epoxy composite film was achieved at 3.19 vol% and 1.08 vol%, respectively. The fabricated composite films showed improvement...
In this research, we present the development of 3D printed, highly stretchable and sensitive strain ...
Because of their high-specific stiffness, carbon-filled epoxy composites can be used in structural c...
The demand for high performance multifunctional wearable devices is more and more pushing towards th...
Advanced functional composites have attracted a great attention for fabricating flexible devices. In...
It remains challenging to prepare wearable strain and pressure sensors with excellent mechanical pro...
Flexible electronics is expected to be one of the most active research areas in the next decade. In ...
Flexible strain sensors based on epoxy/graphene composite film with long molecular weight curing age...
This work developed a facile approach to fabricate highly sensitive and flexible polyurethane/graphe...
Flexible, lightweight sensors with a wide strain-sensing range are showing increasing significance i...
The electrical response of graphene nanoplatelet (GNP) doped silicone elastomers (PDMS and Ecoflex) ...
Graphene is the first 2D crystal ever isolated by mankind. It consists of a single graphite layer, a...
Conductive nanostructured composites combining an epoxy polymer and graphene have been explored for ...
Multilayer graphene (MLG)/polydimethylsiloxane (PDMS) composite foils are developed for possible app...
Wearable mechanical sensors have the potential to transform healthcare by enabling patient monitorin...
This paper presents a substantial review of the fabrication and implementation of graphene-PDMS-base...
In this research, we present the development of 3D printed, highly stretchable and sensitive strain ...
Because of their high-specific stiffness, carbon-filled epoxy composites can be used in structural c...
The demand for high performance multifunctional wearable devices is more and more pushing towards th...
Advanced functional composites have attracted a great attention for fabricating flexible devices. In...
It remains challenging to prepare wearable strain and pressure sensors with excellent mechanical pro...
Flexible electronics is expected to be one of the most active research areas in the next decade. In ...
Flexible strain sensors based on epoxy/graphene composite film with long molecular weight curing age...
This work developed a facile approach to fabricate highly sensitive and flexible polyurethane/graphe...
Flexible, lightweight sensors with a wide strain-sensing range are showing increasing significance i...
The electrical response of graphene nanoplatelet (GNP) doped silicone elastomers (PDMS and Ecoflex) ...
Graphene is the first 2D crystal ever isolated by mankind. It consists of a single graphite layer, a...
Conductive nanostructured composites combining an epoxy polymer and graphene have been explored for ...
Multilayer graphene (MLG)/polydimethylsiloxane (PDMS) composite foils are developed for possible app...
Wearable mechanical sensors have the potential to transform healthcare by enabling patient monitorin...
This paper presents a substantial review of the fabrication and implementation of graphene-PDMS-base...
In this research, we present the development of 3D printed, highly stretchable and sensitive strain ...
Because of their high-specific stiffness, carbon-filled epoxy composites can be used in structural c...
The demand for high performance multifunctional wearable devices is more and more pushing towards th...