A highly stretchable, low-cost strain sensor was successfully prepared using an extremely cost-effective ionic liquid of ethylene glycol/sodium chloride. The hysteresis performance of the ionic-liquid-based sensor was able to be improved by introducing a wavy-shaped fluidic channel diminishing the hysteresis by the viscoelastic relaxation of elastomers. From the simulations on visco-hyperelastic behavior of the elastomeric channel, we demonstrated that the wavy structure can offer lower energy dissipation compared to a flat structure under a given deformation. The resistance response of the ionic-liquid-based wavy (ILBW) sensor was fairly deterministic with no hysteresis, and it was well-matched to the theoretically estimated curves. The IL...
Wearable skin-mounted strain sensors for human motion tracking have the potential to assist in the p...
Most current wearable electronic products are often based on rigid circuit board technologies, limit...
The inherent limitation of stretchable conductor design is mechanical mismatch, because typical Youn...
A highly stretchable, low-cost strain sensor was successfully prepared using an extremely cost-effec...
A highly stretchable, low-cost strain sensor was successfully prepared using an extremely cost-effec...
We report a new class of simple microfluidic strain sensors with high stretchability, transparency, ...
A robust and low cost ionic liquid based strain sensor is fabricated for high strain measurements in...
A robust and low cost ionic liquid based strain sensor is fabricated for high strain measurements in...
AbstractA novel ionic liquid based strain sensor is fabricated for high strain measurements (up to 1...
A novel ionic liquid based strain sensor is fabricated for high strain measurements (up to 10% and h...
A novel ionic liquid based strain sensor is fabricated for high strain measurements (up to 10% and h...
A novel liquid strain sensor was developed by using "room-temperature ionic liquid" as the piezoresi...
Wearable sensors for detection of human activities have encouraged the development of highly elastic...
Wearable sensors for detection of human activities have encouraged the development of highly elastic...
AbstractA novel ionic liquid based strain sensor is fabricated for high strain measurements (up to 1...
Wearable skin-mounted strain sensors for human motion tracking have the potential to assist in the p...
Most current wearable electronic products are often based on rigid circuit board technologies, limit...
The inherent limitation of stretchable conductor design is mechanical mismatch, because typical Youn...
A highly stretchable, low-cost strain sensor was successfully prepared using an extremely cost-effec...
A highly stretchable, low-cost strain sensor was successfully prepared using an extremely cost-effec...
We report a new class of simple microfluidic strain sensors with high stretchability, transparency, ...
A robust and low cost ionic liquid based strain sensor is fabricated for high strain measurements in...
A robust and low cost ionic liquid based strain sensor is fabricated for high strain measurements in...
AbstractA novel ionic liquid based strain sensor is fabricated for high strain measurements (up to 1...
A novel ionic liquid based strain sensor is fabricated for high strain measurements (up to 10% and h...
A novel ionic liquid based strain sensor is fabricated for high strain measurements (up to 10% and h...
A novel liquid strain sensor was developed by using "room-temperature ionic liquid" as the piezoresi...
Wearable sensors for detection of human activities have encouraged the development of highly elastic...
Wearable sensors for detection of human activities have encouraged the development of highly elastic...
AbstractA novel ionic liquid based strain sensor is fabricated for high strain measurements (up to 1...
Wearable skin-mounted strain sensors for human motion tracking have the potential to assist in the p...
Most current wearable electronic products are often based on rigid circuit board technologies, limit...
The inherent limitation of stretchable conductor design is mechanical mismatch, because typical Youn...