In this paper we present flexible strain sensors made of graphene flakes fabricated, characterized, and analyzed for the electrical actuation and readout of their mechanical vibratory response in strain-sensing applications. For a typical suspended graphene membrane fabricated with an approximate length of 10 μm, a mechanical resonance frequency around 136 MHz with a quality factor (Q) of ∼60 in air under ambient conditions was observed. The applied strain can shift the resonance frequency substantially, which is found to be related to the alteration of physical dimension and the built-in strain in the graphene flake. Strain sensing was performed using both planar and nonplanar surfaces (bending with different radii of curvature) as well as...
Monolayer graphene transferred over flexible polyvinyl chloride (PVC) substrate combined with closel...
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...
High accuracy measurement of mechanical strain is critical and broadly practiced in several applicat...
Studying the strain of materials on a small scale is very important for applications in strain senso...
Strain sensor is a device that is used to measure electrical resistance change from the effect of m...
Enhancement in desired properties of next-generation flexible sensors requires continuous developmen...
In this study, we report a buckling approach for graphene and graphene ribbons on stretchable elasto...
Measuring vibrations is essential to ensuring building structural safety and machine stability. Pred...
The use of nanomaterials for strain sensors has attracted attention due to their unique electromecha...
This study reviews the potential of flexible strain sensors based on nanomaterials such as carbon na...
Current state-of-the-art stretchable/flexible sensors have received stringent demands on sensitivity...
In this thesis single-layer graphene (SLG) is implemented onto a low temperature compatible microele...
Off-the-shelf planar strain gauges are ubiquitous and are generally designed for materials with a la...
This work proposes a structure which allows characterization of graphene monolayers under combined e...
Monolayer graphene transferred over flexible polyvinyl chloride (PVC) substrate combined with closel...
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...
High accuracy measurement of mechanical strain is critical and broadly practiced in several applicat...
Studying the strain of materials on a small scale is very important for applications in strain senso...
Strain sensor is a device that is used to measure electrical resistance change from the effect of m...
Enhancement in desired properties of next-generation flexible sensors requires continuous developmen...
In this study, we report a buckling approach for graphene and graphene ribbons on stretchable elasto...
Measuring vibrations is essential to ensuring building structural safety and machine stability. Pred...
The use of nanomaterials for strain sensors has attracted attention due to their unique electromecha...
This study reviews the potential of flexible strain sensors based on nanomaterials such as carbon na...
Current state-of-the-art stretchable/flexible sensors have received stringent demands on sensitivity...
In this thesis single-layer graphene (SLG) is implemented onto a low temperature compatible microele...
Off-the-shelf planar strain gauges are ubiquitous and are generally designed for materials with a la...
This work proposes a structure which allows characterization of graphene monolayers under combined e...
Monolayer graphene transferred over flexible polyvinyl chloride (PVC) substrate combined with closel...
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...