Abstract:
Resistive strain and bending sensors offer a versatile platform for sensing various physical parameters with relatively little effort and budget. The lightweight, robust ...Show MoreMetadata
Abstract:
Resistive strain and bending sensors offer a versatile platform for sensing various physical parameters with relatively little effort and budget. The lightweight, robust and compact sensors are extensively used in manifold low-power applications. Recently, scribed and flexible laser-induced graphene sensors have shown potent capabilities for a variety of measurements, including flow, deflection, and force. Achieving a high sensitivity to various stimuli remains a challenge due to limited change in relative resistance. In this paper, we report a multifunctional LIG sensor with widely tunable properties and significantly enhanced electromechanical performance. A method of repeated laser writing is used to increase the porosity, the uniform carbonization degree and, most importantly, the sensitivity of the LIG sensors. A gauge factor of 91.2 is achieved after three-times laser writing at low power, which is an increase of 750% to one-time laser writing and 720% higher than the ones previously reported for LIG strain sensors. The increase is attributed to a more porous surface morphology that provides more overlapping area and displacement of the graphene layers. A homogeneous bidirectional response was obtained by scribing the electrodes on both faces of the substrate. Parylene C-coating is used to protect the LIG sensors from environmental effects. Coated sensors were packaged to a PCB assembly for easy integration into various applications. An example is a LIG bending sensor customized for velocity profile monitoring of Unmanned Aerial Vehicles in the outdoor environment.
Published in: IEEE Sensors Journal ( Volume: 21, Issue: 17, 01 September 2021)
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- IEEE Keywords
- Sensors ,
- Writing ,
- Lasers ,
- Graphene ,
- Bending ,
- Fabrication ,
- Electromechanical sensors
- Index Terms
- Graphene Sensor ,
- Impedance ,
- Outdoor Environments ,
- Resistance Change ,
- Unmanned Aerial Vehicles ,
- Strain Sensors ,
- Homogeneous Response ,
- Gauge Factor ,
- Relative Resistance Change ,
- Root Mean Square Error ,
- Mean Square Error ,
- Conductive ,
- Raman Spectroscopy ,
- X-ray Photoelectron Spectroscopy ,
- Fabrication Process ,
- Light Detection And Ranging ,
- Bragg Angle ,
- Inertial Measurement Unit ,
- Gas Sensors ,
- Global Navigation Satellite System ,
- Robot Operating System ,
- Piezoresistive ,
- Porous Graphene ,
- Velocity Update ,
- Autopilot ,
- Degree Of Graphitization ,
- Sensor Output ,
- Electromechanical Testing
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Sensors ,
- Writing ,
- Lasers ,
- Graphene ,
- Bending ,
- Fabrication ,
- Electromechanical sensors
- Index Terms
- Graphene Sensor ,
- Impedance ,
- Outdoor Environments ,
- Resistance Change ,
- Unmanned Aerial Vehicles ,
- Strain Sensors ,
- Homogeneous Response ,
- Gauge Factor ,
- Relative Resistance Change ,
- Root Mean Square Error ,
- Mean Square Error ,
- Conductive ,
- Raman Spectroscopy ,
- X-ray Photoelectron Spectroscopy ,
- Fabrication Process ,
- Light Detection And Ranging ,
- Bragg Angle ,
- Inertial Measurement Unit ,
- Gas Sensors ,
- Global Navigation Satellite System ,
- Robot Operating System ,
- Piezoresistive ,
- Porous Graphene ,
- Velocity Update ,
- Autopilot ,
- Degree Of Graphitization ,
- Sensor Output ,
- Electromechanical Testing
- Author Keywords