We present a pressure sensor based on the piezoresistive effect of graphene. The sensor is a 100?nm thick, 280??m wide square silicon nitride membrane with graphene meander patterns located on the maximum strain area. The multilayer, polycrystalline graphene was obtained by chemical vapor deposition. Strain in graphene was generated by applying differential pressure across the membrane. Finite element simulation was used to analyze the strain distribution. By performing electromechanical measurements, we obtained a gauge factor of ?1.6 for graphene and a dynamic range from 0?mbar to 700?mbar for the pressure sensor
Since the introduction of the iPhone and Wii gaming console in 2007 the market for mobile sensor app...
Piezoresistive sponges represent a popular design for highly flexible pressure sensors and are typic...
Piezoresistive sponges represent a popular design for highly flexible pressure sensors and are typic...
We present a pressure sensor based on the piezoresistive effect of graphene. The sensor is a 100?nm ...
The piezoresistive effect in graphene has been experimentally demonstrated for both uniaxial and bia...
The piezoresistive effect in graphene has been experimentally demonstrated for both uniaxial and bia...
Monolayer graphene exhibits exceptional electronic and mechanical properties, making it a very promi...
This thesis describes a novel microelectromechanical system (MEMS) piezoresistive pressure sensor ba...
Monolayer graphene exhibits exceptional electronic and mechanical properties, making it a very promi...
Since the introduction of the iPhone and Wii gaming console in 2007 the market for mobile sensor app...
The operating principle of squeeze-film pressure sensors is based on the pressure dependence of a me...
Pressure sensors based on suspended graphene membranes have shown extraordinary sensitivity for unia...
The high-temperature pressure sensors have wide applications in aerospace, petroleum, geothermal exp...
In this work, the electrical properties of graphene papers were investigated with the aim of develop...
Flexible pressure sensors have received much attention due to their widespread potential application...
Since the introduction of the iPhone and Wii gaming console in 2007 the market for mobile sensor app...
Piezoresistive sponges represent a popular design for highly flexible pressure sensors and are typic...
Piezoresistive sponges represent a popular design for highly flexible pressure sensors and are typic...
We present a pressure sensor based on the piezoresistive effect of graphene. The sensor is a 100?nm ...
The piezoresistive effect in graphene has been experimentally demonstrated for both uniaxial and bia...
The piezoresistive effect in graphene has been experimentally demonstrated for both uniaxial and bia...
Monolayer graphene exhibits exceptional electronic and mechanical properties, making it a very promi...
This thesis describes a novel microelectromechanical system (MEMS) piezoresistive pressure sensor ba...
Monolayer graphene exhibits exceptional electronic and mechanical properties, making it a very promi...
Since the introduction of the iPhone and Wii gaming console in 2007 the market for mobile sensor app...
The operating principle of squeeze-film pressure sensors is based on the pressure dependence of a me...
Pressure sensors based on suspended graphene membranes have shown extraordinary sensitivity for unia...
The high-temperature pressure sensors have wide applications in aerospace, petroleum, geothermal exp...
In this work, the electrical properties of graphene papers were investigated with the aim of develop...
Flexible pressure sensors have received much attention due to their widespread potential application...
Since the introduction of the iPhone and Wii gaming console in 2007 the market for mobile sensor app...
Piezoresistive sponges represent a popular design for highly flexible pressure sensors and are typic...
Piezoresistive sponges represent a popular design for highly flexible pressure sensors and are typic...