Although skin-like pressure sensors exhibit high sensitivity with a high performance over a wide area, they have limitations owing to the critical issue of being linear only in a narrow strain range. Various strategies have been proposed to improve the performance of soft pressure sensors, but such a nonlinearity issue still exists and the sensors are only effective within a very narrow strain range. Herein, we fabricated a highly sensitive multi-channel pressure sensor array by using a simple thermal evaporation process of conducting nanomembranes onto a stretchable substrate. A rigid-island structure capable of dissipating accumulated strain energy induced by external mechanical stimuli was adopted for the sensor. The performance of the s...
Flexible pressure sensors that can maintain their pressure sensing ability with arbitrary deformatio...
This work presents a soft capacitive pressure sensor fabricated by sandwiching a porous elastomeric ...
Human intervention can be replaced through development of devices with a broad range of sensory capa...
© 2021 by the authors. Licensee MDPI, Basel, Switzerland.Although skin-like pressure sensors exhibit...
We report on the facile fabrication of a stretchable array of highly sensitive pressure sensors. The...
For wearable health monitoring systems and soft robotics, stretchable/flexible pressure sensors have...
A bio-inspired absolute pressure sensor network has been developed. Absolute pressure sensors, distr...
A bio-inspired absolute pressure sensor network has been developed. Absolute pressure sensors, distr...
Soft pressure sensors play key roles as input devices of electronic skin (E-skin) to imitate real hu...
In the fields of humanoid robots, soft robotics, and wearable electronics, the development of artifi...
Herein, a flexible 6 × 6 pressure-sensitive array (based on the PDMS (Polydimethylsiloxane) porous s...
This work addresses to the modern technologies that need to be instrumented with lightweight highly ...
To realize flexible pressure sensors with high sensitivity, surface-textured soft films have often b...
This project describes resistance-based soft sensors filled with liquid metal, which permit measurem...
To realize flexible pressure sensors with high sensitivity, surface-textured soft films have often b...
Flexible pressure sensors that can maintain their pressure sensing ability with arbitrary deformatio...
This work presents a soft capacitive pressure sensor fabricated by sandwiching a porous elastomeric ...
Human intervention can be replaced through development of devices with a broad range of sensory capa...
© 2021 by the authors. Licensee MDPI, Basel, Switzerland.Although skin-like pressure sensors exhibit...
We report on the facile fabrication of a stretchable array of highly sensitive pressure sensors. The...
For wearable health monitoring systems and soft robotics, stretchable/flexible pressure sensors have...
A bio-inspired absolute pressure sensor network has been developed. Absolute pressure sensors, distr...
A bio-inspired absolute pressure sensor network has been developed. Absolute pressure sensors, distr...
Soft pressure sensors play key roles as input devices of electronic skin (E-skin) to imitate real hu...
In the fields of humanoid robots, soft robotics, and wearable electronics, the development of artifi...
Herein, a flexible 6 × 6 pressure-sensitive array (based on the PDMS (Polydimethylsiloxane) porous s...
This work addresses to the modern technologies that need to be instrumented with lightweight highly ...
To realize flexible pressure sensors with high sensitivity, surface-textured soft films have often b...
This project describes resistance-based soft sensors filled with liquid metal, which permit measurem...
To realize flexible pressure sensors with high sensitivity, surface-textured soft films have often b...
Flexible pressure sensors that can maintain their pressure sensing ability with arbitrary deformatio...
This work presents a soft capacitive pressure sensor fabricated by sandwiching a porous elastomeric ...
Human intervention can be replaced through development of devices with a broad range of sensory capa...