Strain sensors with high elastic limit and high sensitivity are required to meet the rising demand for wearable electronics. Here, we present the fabrication of highly sensitive strain sensors based on nanocomposites consisting of graphene aerogel (GA) and polydimethylsiloxane (PDMS), with the primary focus being to tune the sensitivity of the sensors by tailoring the cellular microstructure through controlling the manufacturing processes. The resultant nanocomposite sensors exhibit a high sensitivity with a gauge factor of up to approximately 61.3. Of significant importance is that the sensitivity of the strain sensors can be readily altered by changing the concentration of the precursor (i.e., an aqueous dispersion of graphene oxide) and ...
Highly sensitive wearable strain sensors based on graphene and its derivatives have shown great pote...
Graphene-based hydrogels are characterized by nanoporous structure and tailored properties, which ca...
The electrical response of graphene nanoplatelet (GNP) doped silicone elastomers (PDMS and Ecoflex) ...
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...
Nanocomposite strain sensors composed of compressed honeycomb-like reduced-graphene-oxide (RGO) foam...
High accuracy measurement of mechanical strain is critical and broadly practiced in several applicat...
Graphene-based strain sensors have attracted much attention recently. Usually, there is a trade-off ...
Strain sensors capable of operating in high strain conditions remain a technical challenge. In parti...
We are reporting, a novel reduced graphene oxide (RGO) and silver (Ag) nanocomposite based piezoresi...
Large-area flexible sensors have several applications [1]-[11]. In new generation aerospace systems,...
Flexible strain sensor has wide applications in wearable devices and human–computer interaction. The...
Ultralight and highly flexible aerogel sensors, composed of reduced graphene oxide cross-linked by s...
In this research, we present the development of 3D printed, highly stretchable and sensitive strain ...
The use of nanomaterials for strain sensors has attracted attention due to their unique electromecha...
Highly sensitive wearable strain sensors based on graphene and its derivatives have shown great pote...
Graphene-based hydrogels are characterized by nanoporous structure and tailored properties, which ca...
The electrical response of graphene nanoplatelet (GNP) doped silicone elastomers (PDMS and Ecoflex) ...
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...
Nanocomposite strain sensors composed of compressed honeycomb-like reduced-graphene-oxide (RGO) foam...
High accuracy measurement of mechanical strain is critical and broadly practiced in several applicat...
Graphene-based strain sensors have attracted much attention recently. Usually, there is a trade-off ...
Strain sensors capable of operating in high strain conditions remain a technical challenge. In parti...
We are reporting, a novel reduced graphene oxide (RGO) and silver (Ag) nanocomposite based piezoresi...
Large-area flexible sensors have several applications [1]-[11]. In new generation aerospace systems,...
Flexible strain sensor has wide applications in wearable devices and human–computer interaction. The...
Ultralight and highly flexible aerogel sensors, composed of reduced graphene oxide cross-linked by s...
In this research, we present the development of 3D printed, highly stretchable and sensitive strain ...
The use of nanomaterials for strain sensors has attracted attention due to their unique electromecha...
Highly sensitive wearable strain sensors based on graphene and its derivatives have shown great pote...
Graphene-based hydrogels are characterized by nanoporous structure and tailored properties, which ca...
The electrical response of graphene nanoplatelet (GNP) doped silicone elastomers (PDMS and Ecoflex) ...