The growing demand for flexible, ultrasensitive, squeezable, skin-mountable and wearable sensors tailored to the requirements of personalized health care monitoring has fueled the necessity to explore novel nanomaterial-polymer composite-based sensors. Herein, we report a sensitive, 3D squeezable graphene-polydimethylsiloxane (PDMS) foam-based piezoresistive sensor realized by infusing multi-layered graphene nanoparticles into a sugar scaffolded porous PDMS foam structure. Static and dynamic compressive strain testing of the resulting piezoresistive foams sensors revealed two linear response regions with an average gauge factor of 2.87 ~ 8.77 over a strain range of 0-50 %. Furthermore, the dynamic stimulus-response revealed the ability of t...
This work reports a facile method of fabricatingultralight weight (density of 0.305 g/cm3) and squee...
The demand for high performance multifunctional wearable devices is more and more pushing towards th...
In this work, a 4-step method of developing flexible, stretchable, and thin graphene-on-polydimethyl...
The growing demand for flexible, ultrasensitive, squeezable, skin-mountable and wearable sensors tai...
The growing demand for flexible, ultrasensitive, squeezable, skin-mountable and wearable sensors tai...
The growing demand for flexible, ultrasensitive, squeezable, skin-mountable and wearable sensors tai...
The growing demand for flexible, ultrasensitive, squeezable, skin-mountable and wearable sensors tai...
The growing demand for flexible, ultrasensitive, squeezable, skin-mountable and wearable sensors tai...
This work reports a facile method of fabricating ultralight weight (density of 0.305 g/cm3) and sque...
This work reports a facile method of fabricating ultralight weight (density of 0.305 g/cm3) and sque...
Recently, 3D porous graphene-polymer composite-based piezoresistive sensors have drawn great interes...
Recently, 3D porous graphene-polymer composite-based piezoresistive sensors have drawn great interes...
The demand for high performance multifunctional wearable devices is more and more pushing towards th...
This work reports a facile method of fabricatingultralight weight (density of 0.305 g/cm3) and squee...
This work reports a facile method of fabricatingultralight weight (density of 0.305 g/cm3) and squee...
This work reports a facile method of fabricatingultralight weight (density of 0.305 g/cm3) and squee...
The demand for high performance multifunctional wearable devices is more and more pushing towards th...
In this work, a 4-step method of developing flexible, stretchable, and thin graphene-on-polydimethyl...
The growing demand for flexible, ultrasensitive, squeezable, skin-mountable and wearable sensors tai...
The growing demand for flexible, ultrasensitive, squeezable, skin-mountable and wearable sensors tai...
The growing demand for flexible, ultrasensitive, squeezable, skin-mountable and wearable sensors tai...
The growing demand for flexible, ultrasensitive, squeezable, skin-mountable and wearable sensors tai...
The growing demand for flexible, ultrasensitive, squeezable, skin-mountable and wearable sensors tai...
This work reports a facile method of fabricating ultralight weight (density of 0.305 g/cm3) and sque...
This work reports a facile method of fabricating ultralight weight (density of 0.305 g/cm3) and sque...
Recently, 3D porous graphene-polymer composite-based piezoresistive sensors have drawn great interes...
Recently, 3D porous graphene-polymer composite-based piezoresistive sensors have drawn great interes...
The demand for high performance multifunctional wearable devices is more and more pushing towards th...
This work reports a facile method of fabricatingultralight weight (density of 0.305 g/cm3) and squee...
This work reports a facile method of fabricatingultralight weight (density of 0.305 g/cm3) and squee...
This work reports a facile method of fabricatingultralight weight (density of 0.305 g/cm3) and squee...
The demand for high performance multifunctional wearable devices is more and more pushing towards th...
In this work, a 4-step method of developing flexible, stretchable, and thin graphene-on-polydimethyl...