The development of electronic skin (e-skin) and soft tactile sensing has recently attracted great interest. Here we report for the first time on a novel ionic liquid (IL) based soft pressure sensor with multi-point touch detection capability using 1-butyl-3-methylimidazolium tetrafluoroborate ([BMIM]+[BF4]−) as a highly conductive sensing medium. The sensing mechanism is attributed to the repopulation of charge cations and anions in aqueous solution under pressure. The sensor can detect two dimensional touching positions with a sensitivity of −0.28% kPa−1. Our sensor showed good stability and temperature independence thanks to the incompressibility of IL in the range of touch pressure and the appropriate signal measurement configuration. We...
International audienceThis paper presents a novel design and development of a low-cost and multi-tou...
The development of soft electronics is critical to the realization of artificial intelligence that c...
This project describes resistance-based soft sensors filled with liquid metal, which permit measurem...
The development of electronic skin (e-skin) and soft tactile sensing has recently attracted great in...
Design and implementation of sensing devices have been driven by the need for high sensitivity, low ...
Design and implementation of sensing devices have been driven by the need for high sensitivity, low ...
Ionic tactile sensors (ITS) are an emerging subfield of wearable electronics, capable of mimicking t...
Ionic tactile sensors (ITS) are an emerging subfield of wearable electronics, capable of mimicking t...
Electrical impedance tomography (EIT) is a promising technique for large area tactile sensing for ro...
We develop a novel triple-state liquid-based resistive microfluidic tactile sensor with high flexibi...
AbstractElectrodermal devices that capture the physiological response of skin are crucial for monito...
In the fields of humanoid robots, soft robotics, and wearable electronics, the development of artifi...
The human tactile system, with its specialised mechanoreceptors, is capable of dexterous manipulatio...
© Springer Nature Switzerland AG 2019. This paper presents an elastomer-based tactile sensor that ca...
Rapid advances in wearable electronics and mechno-sensational human-machine interfaces impose great ...
International audienceThis paper presents a novel design and development of a low-cost and multi-tou...
The development of soft electronics is critical to the realization of artificial intelligence that c...
This project describes resistance-based soft sensors filled with liquid metal, which permit measurem...
The development of electronic skin (e-skin) and soft tactile sensing has recently attracted great in...
Design and implementation of sensing devices have been driven by the need for high sensitivity, low ...
Design and implementation of sensing devices have been driven by the need for high sensitivity, low ...
Ionic tactile sensors (ITS) are an emerging subfield of wearable electronics, capable of mimicking t...
Ionic tactile sensors (ITS) are an emerging subfield of wearable electronics, capable of mimicking t...
Electrical impedance tomography (EIT) is a promising technique for large area tactile sensing for ro...
We develop a novel triple-state liquid-based resistive microfluidic tactile sensor with high flexibi...
AbstractElectrodermal devices that capture the physiological response of skin are crucial for monito...
In the fields of humanoid robots, soft robotics, and wearable electronics, the development of artifi...
The human tactile system, with its specialised mechanoreceptors, is capable of dexterous manipulatio...
© Springer Nature Switzerland AG 2019. This paper presents an elastomer-based tactile sensor that ca...
Rapid advances in wearable electronics and mechno-sensational human-machine interfaces impose great ...
International audienceThis paper presents a novel design and development of a low-cost and multi-tou...
The development of soft electronics is critical to the realization of artificial intelligence that c...
This project describes resistance-based soft sensors filled with liquid metal, which permit measurem...