Electromechanical response of materials is a key property for various applications ranging from actuators to sophisticated nanoelectromechanical systems. Here electromechanical properties of the single-layer graphene transferred onto SiO2 calibration grating substrates is studied via piezoresponse force microscopy and confocal Raman spectroscopy. The correlation of mechanical strains in graphene layer with the substrate morphology is established via Raman mapping. Apparent vertical piezoresponse from the single-layer graphene supported by underlying SiO2 structure is observed by piezoresponse force microscopy. The calculated vertical piezocoefficient is about 1.4 nm V(-1), that is, much higher than that of the conventional piezoelectric mat...
We demonstrate a graphene-coated polymer film as a transparent piezoresistive strain sensor. Strain ...
We show the evolution of Raman spectra with a number of graphene layers on different substrates, SiO...
Graphene-based strain sensors have attracted much attention recently. Usually, there is a trade-off ...
Electromechanical response of materials is a key property for various applications ranging from actu...
Spatially resolved Raman spectroscopy and piezoresponse force microscopy are very interesting and us...
In our paper we provided an experimental evidence that the single-layer graphene (SLG) deposited on ...
Ferroelectric materials based on lead zirconate titanate (PZT) are widely used as sensors and actuat...
Layered two-dimensional (2D) materials possess outstanding electronic, optical, chemical and me-chan...
Results from studying the effect of an applied electric voltage on the Raman spectrum of graphene de...
Electrostatic gating offers elegant ways to simultaneously strain and dope atomically thin membranes...
Over the years, microelectromechanical systems (MEMS) have been utilized widely in sensing applicati...
The hysteresis effect is a common problem in graphene field-effect transistors (FETs). Usually, the ...
Graphene is a single atomic sheet of graphite that exhibits a diverse range of unique properties. Th...
We discover that piezoelectric effects can be engineered into nonpiezoelectric graphene through the ...
ABSTRACT: Graphene is a promising material for strain engineering based on its excellent flexibility...
We demonstrate a graphene-coated polymer film as a transparent piezoresistive strain sensor. Strain ...
We show the evolution of Raman spectra with a number of graphene layers on different substrates, SiO...
Graphene-based strain sensors have attracted much attention recently. Usually, there is a trade-off ...
Electromechanical response of materials is a key property for various applications ranging from actu...
Spatially resolved Raman spectroscopy and piezoresponse force microscopy are very interesting and us...
In our paper we provided an experimental evidence that the single-layer graphene (SLG) deposited on ...
Ferroelectric materials based on lead zirconate titanate (PZT) are widely used as sensors and actuat...
Layered two-dimensional (2D) materials possess outstanding electronic, optical, chemical and me-chan...
Results from studying the effect of an applied electric voltage on the Raman spectrum of graphene de...
Electrostatic gating offers elegant ways to simultaneously strain and dope atomically thin membranes...
Over the years, microelectromechanical systems (MEMS) have been utilized widely in sensing applicati...
The hysteresis effect is a common problem in graphene field-effect transistors (FETs). Usually, the ...
Graphene is a single atomic sheet of graphite that exhibits a diverse range of unique properties. Th...
We discover that piezoelectric effects can be engineered into nonpiezoelectric graphene through the ...
ABSTRACT: Graphene is a promising material for strain engineering based on its excellent flexibility...
We demonstrate a graphene-coated polymer film as a transparent piezoresistive strain sensor. Strain ...
We show the evolution of Raman spectra with a number of graphene layers on different substrates, SiO...
Graphene-based strain sensors have attracted much attention recently. Usually, there is a trade-off ...