With the continuous progress of artificial intelligence and other manufacturing technologies, there is promising potential for wearable piezoresistive sensors in human physiological signal detection and bionic robots. Here, we present a facile solution-mixing process to fabricate a multiwalled carbon nanotube/graphite powder (MWCNT@Gp) film, which has high sensitivity and great linearity and is more oriented to flexible piezoresistive sensors. The sensor consists of two parts: a spinosum microstructure shaped by a sandpaper template and polydimethylsiloxane (PDMS) as the top substrate and interdigital electrodes as the bottom substrate. The experiments we have conducted show that these two parts provide good protection to the MWCNTs@Gp film...
Self-powered operation, flexibility, excellent mechanical properties, and ultra-high sensitivity are...
This paper presents a flexible plantar pressure sensor with a simple structure and easy accessibilit...
The emergence of wearable electronics provides opportunity for continuous health monitoring. Current...
A facile method for preparing an easy processing, repeatable and flexible pressure sensor was presen...
A facile method for preparing an easy processing, repeatable and flexible pressure sensor was presen...
Pressure sensing is highly demanding in wearable devices, robotics, and artificial intelligence, whe...
In this work, we reported a chemically modified technique via screen printing method to fabricate ca...
Stretchable and wearable strain-sensing devices are appropriate for motion detection, biomedical mon...
To realize the practical applications of flexible pressure sensors, the high performance (sensitivit...
Excellent flexibility, high sensitivity, and low consumption are essential characteristics in flexib...
A wearable, low-cost, highly repeatable piezoresistive sensor was fabricated by the synthesis of mod...
Flexible pressure sensors with piezoresistive polymer composites can be integrated into elastomers t...
Wearable pressure sensors are crucial building blocks for potential applications in real-time health...
This paper presents a flexible plantar pressure sensor with a simple structure and easy accessibilit...
Electroconductive textile yarns are of particular interest for their use as flexible and wearable se...
Self-powered operation, flexibility, excellent mechanical properties, and ultra-high sensitivity are...
This paper presents a flexible plantar pressure sensor with a simple structure and easy accessibilit...
The emergence of wearable electronics provides opportunity for continuous health monitoring. Current...
A facile method for preparing an easy processing, repeatable and flexible pressure sensor was presen...
A facile method for preparing an easy processing, repeatable and flexible pressure sensor was presen...
Pressure sensing is highly demanding in wearable devices, robotics, and artificial intelligence, whe...
In this work, we reported a chemically modified technique via screen printing method to fabricate ca...
Stretchable and wearable strain-sensing devices are appropriate for motion detection, biomedical mon...
To realize the practical applications of flexible pressure sensors, the high performance (sensitivit...
Excellent flexibility, high sensitivity, and low consumption are essential characteristics in flexib...
A wearable, low-cost, highly repeatable piezoresistive sensor was fabricated by the synthesis of mod...
Flexible pressure sensors with piezoresistive polymer composites can be integrated into elastomers t...
Wearable pressure sensors are crucial building blocks for potential applications in real-time health...
This paper presents a flexible plantar pressure sensor with a simple structure and easy accessibilit...
Electroconductive textile yarns are of particular interest for their use as flexible and wearable se...
Self-powered operation, flexibility, excellent mechanical properties, and ultra-high sensitivity are...
This paper presents a flexible plantar pressure sensor with a simple structure and easy accessibilit...
The emergence of wearable electronics provides opportunity for continuous health monitoring. Current...