Flexible pressure sensors attached conformably to skin are of great interest for wearable electronics and robotic applications. However, effective utilization of such devices often requires them to be stretchable. Herein we report a stretchable pressure sensor based on carbon nanotube - polydimethylsiloxane (CNT-PDMS) nanocomposite. The sensors are based on interdigitated silver (Ag) patterns as bottom electrodes which are connected by a top conductive polymer made of CNT-PDMS composite. The sensors are developed on a PDMS substrate to achieve the required elasticity. The performance of the sensors is assessed by measuring change in the resistance of the device for applied mechanical stimuli. The minimal detectable pressure by our sensor is...
This paper introduces an ultra-sensitive pressure sensor with a flexible diaphragm apparatus. Conduc...
The paper presents the design, development, and fabrication of a flexible and wearable sensor based ...
Flexible pressure sensors still face difficulties achieving a constantly adaptable micronanostructur...
Flexible pressure sensors attached conformably to skin are of great interest for wearable electronic...
This paper reports the fabrication process and characterization of a flexible pressure sensor based ...
Nanocomposites based sensors were developed and reported by many researchers for different purposes ...
Flexible pressure sensors with piezoresistive polymer composites can be integrated into elastomers t...
This paper presents a study into the electrical conductivity of multi-wall carbon nanotube-polydimet...
Flexible pressure sensors are essential components of electronic skins for future attractive applica...
Flexible pressure sensors are essential components of electronic skins for future attractive applica...
A new approach for the fabrication of flexible pressure sensors based on aligned carbon nanotubes (A...
A new approach for the fabrication of flexible pressure sensors based on aligned carbon nanotubes (A...
Wearable pressure sensors are crucial building blocks for potential applications in real-time health...
A new approach for the fabrication of flexible pressure sensors based on aligned carbon nanotubes (A...
AbstractA new approach for the fabrication of flexible pressure sensors based on aligned carbon nano...
This paper introduces an ultra-sensitive pressure sensor with a flexible diaphragm apparatus. Conduc...
The paper presents the design, development, and fabrication of a flexible and wearable sensor based ...
Flexible pressure sensors still face difficulties achieving a constantly adaptable micronanostructur...
Flexible pressure sensors attached conformably to skin are of great interest for wearable electronic...
This paper reports the fabrication process and characterization of a flexible pressure sensor based ...
Nanocomposites based sensors were developed and reported by many researchers for different purposes ...
Flexible pressure sensors with piezoresistive polymer composites can be integrated into elastomers t...
This paper presents a study into the electrical conductivity of multi-wall carbon nanotube-polydimet...
Flexible pressure sensors are essential components of electronic skins for future attractive applica...
Flexible pressure sensors are essential components of electronic skins for future attractive applica...
A new approach for the fabrication of flexible pressure sensors based on aligned carbon nanotubes (A...
A new approach for the fabrication of flexible pressure sensors based on aligned carbon nanotubes (A...
Wearable pressure sensors are crucial building blocks for potential applications in real-time health...
A new approach for the fabrication of flexible pressure sensors based on aligned carbon nanotubes (A...
AbstractA new approach for the fabrication of flexible pressure sensors based on aligned carbon nano...
This paper introduces an ultra-sensitive pressure sensor with a flexible diaphragm apparatus. Conduc...
The paper presents the design, development, and fabrication of a flexible and wearable sensor based ...
Flexible pressure sensors still face difficulties achieving a constantly adaptable micronanostructur...