A facile method for preparing an easy processing, repeatable and flexible pressure sensor was presented via the synthesis of modified multi-walled carbon nanotubes (m-MWNTs) and polyurethane (PU) films. The surface modification of multi-walled carbon nanotubes (MWNTs) simultaneously used a silane coupling agent (KH550) and sodium dodecyl benzene sulfonate (SDBS) to improve the dispersibility and compatibility of the MWNTs in a polymer matrix. The electrical property and piezoresistive behavior of the m-MWNT/PU composites were compared with raw multi-walled carbon nanotube (raw MWNT)/PU composites. Under linear uniaxial pressure, the m-MWNT/PU composite exhibited 4.282%kPa−1 sensitivity within the pressure of 1 kPa. The nonlinear error...
Polymer composites containing conductive fillers that utilize the piezoresistive effect can be emplo...
Self-powered operation, flexibility, excellent mechanical properties, and ultra-high sensitivity are...
A wearable, low-cost, highly repeatable piezoresistive sensor was fabricated by the synthesis of mod...
A facile method for preparing an easy processing, repeatable and flexible pressure sensor was presen...
Flexible pressure sensors with piezoresistive polymer composites can be integrated into elastomers t...
To realize the practical applications of flexible pressure sensors, the high performance (sensitivit...
Conducting polymer composites consisting of carbon nanotubes (CNTs) as a conductive filler and polyd...
As the foremost component of wearable devices, flexible pressure sensors require high sensitivity, w...
We have synthesized unique flexible pressure-sensitive nanocomposites by means of a solution mixing ...
Carbon nanotubes offer attractive possibilities for developing new sensors because of superior mech...
We have synthesized unique flexible pressure-sensitive nanocomposites by means of a solution mixing ...
Carbon nanotubes offer attractive possibilities for developing new sensors because of superior mecha...
Carbon nanotubes offer attractive possibilities for developing new sensors because of superior mech...
Pressure sensing is highly demanding in wearable devices, robotics, and artificial intelligence, whe...
With the continuous progress of artificial intelligence and other manufacturing technologies, there ...
Polymer composites containing conductive fillers that utilize the piezoresistive effect can be emplo...
Self-powered operation, flexibility, excellent mechanical properties, and ultra-high sensitivity are...
A wearable, low-cost, highly repeatable piezoresistive sensor was fabricated by the synthesis of mod...
A facile method for preparing an easy processing, repeatable and flexible pressure sensor was presen...
Flexible pressure sensors with piezoresistive polymer composites can be integrated into elastomers t...
To realize the practical applications of flexible pressure sensors, the high performance (sensitivit...
Conducting polymer composites consisting of carbon nanotubes (CNTs) as a conductive filler and polyd...
As the foremost component of wearable devices, flexible pressure sensors require high sensitivity, w...
We have synthesized unique flexible pressure-sensitive nanocomposites by means of a solution mixing ...
Carbon nanotubes offer attractive possibilities for developing new sensors because of superior mech...
We have synthesized unique flexible pressure-sensitive nanocomposites by means of a solution mixing ...
Carbon nanotubes offer attractive possibilities for developing new sensors because of superior mecha...
Carbon nanotubes offer attractive possibilities for developing new sensors because of superior mech...
Pressure sensing is highly demanding in wearable devices, robotics, and artificial intelligence, whe...
With the continuous progress of artificial intelligence and other manufacturing technologies, there ...
Polymer composites containing conductive fillers that utilize the piezoresistive effect can be emplo...
Self-powered operation, flexibility, excellent mechanical properties, and ultra-high sensitivity are...
A wearable, low-cost, highly repeatable piezoresistive sensor was fabricated by the synthesis of mod...