To realize nanomechanical graphene-based pressure sensors, it is beneficial to have a method to electrically readout the static displacement of a suspended graphene membrane. Capacitive readout, typical in micro-electromechanical systems, gets increasingly challenging as one starts shrinking the dimensions of these devices because the expected responsivity of such devices is below 0.1 aF/Pa. To overcome the challenges of detecting small capacitance changes, we design an electrical readout device fabricated on top of an insulating quartz substrate, maximizing the contribution of the suspended membrane to the total capacitance of the device. The capacitance of the drum is further increased by reducing the gap size to 110 nm. Using an external...
The LC-MEMS pressure sensor is an attractive option for an implantable sensor. It senses pressure wi...
Monolayer graphene exhibits exceptional electronic and mechanical properties, making it a very promi...
Monolayer graphene exhibits exceptional electronic and mechanical properties, making it a very promi...
To realize nanomechanical graphene-based pressure sensors, it is beneficial to have a method to elec...
This paper reports the design and theoretical calculation of a capacitive ultra-low pressure sensor,...
Many practical applications require flexible high-sensitivity pressure sensors. However, such sensor...
Graphene is a single atomic layer material with exceptional electronic and mechanical properties. Gr...
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...
We present a pressure sensor based on the piezoresistive effect of graphene. The sensor is a 100?nm ...
We present a pressure sensor based on the piezoresistive effect of graphene. The sensor is a 100?nm ...
Since the introduction of the iPhone and Wii gaming console in 2007 the market for mobile sensor app...
Graphene is a single, atomic layer, hexagonal lattice with useful electrical properties. Discovered ...
Graphene is a single, atomic layer, hexagonal lattice with useful electrical properties. Discovered ...
Graphene is a single, atomic layer, hexagonal lattice with useful electrical properties. Discovered ...
The LC-MEMS pressure sensor is an attractive option for an implantable sensor. It senses pressure wi...
Monolayer graphene exhibits exceptional electronic and mechanical properties, making it a very promi...
Monolayer graphene exhibits exceptional electronic and mechanical properties, making it a very promi...
To realize nanomechanical graphene-based pressure sensors, it is beneficial to have a method to elec...
This paper reports the design and theoretical calculation of a capacitive ultra-low pressure sensor,...
Many practical applications require flexible high-sensitivity pressure sensors. However, such sensor...
Graphene is a single atomic layer material with exceptional electronic and mechanical properties. Gr...
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...
We present a pressure sensor based on the piezoresistive effect of graphene. The sensor is a 100?nm ...
We present a pressure sensor based on the piezoresistive effect of graphene. The sensor is a 100?nm ...
Since the introduction of the iPhone and Wii gaming console in 2007 the market for mobile sensor app...
Graphene is a single, atomic layer, hexagonal lattice with useful electrical properties. Discovered ...
Graphene is a single, atomic layer, hexagonal lattice with useful electrical properties. Discovered ...
Graphene is a single, atomic layer, hexagonal lattice with useful electrical properties. Discovered ...
The LC-MEMS pressure sensor is an attractive option for an implantable sensor. It senses pressure wi...
Monolayer graphene exhibits exceptional electronic and mechanical properties, making it a very promi...
Monolayer graphene exhibits exceptional electronic and mechanical properties, making it a very promi...