Flexible sensors which are highly stretchable, sensitive, and self-adhesive are critically required for wearable electronics, personalized healthcare monitoring and electronic skins. Conductive hydrogel-based sensors hold great promises for this purpose. However, it remains a critical challenge to integrate all the critical functions (e.g., remarkable stretchability, high sensitivity, and self-adhesiveness) into one hydrogel. Here, we propose a bio-inspired hybrid hydrogel framework with a hierarchical configuration that incorporates sodium casein, polydopamine, calcium chloride, and graphene oxide into a polyacrylamide hydrogel. Multiple interpenetrating network architectures and their strong interactions provide superior stretchability of...
Flexible wearable sensors show great potential for applications in wearable devices, remote health m...
Tactile sensors, namely, flexible devices that sense physical stimuli, have received much attention ...
Summary: Skin-like electronics are developing rapidly to realize a variety of applications such as w...
Ionic gel-based electronic devices are essential in future healthcare/biomedical applications, such ...
Conductive hydrogels, which are considered to be a promising material for human motion detection sen...
Herein, we demonstrate a ternary ionic hydrogel sensor consisting of tannic acid, sodium alginate, a...
Integrating multifunctionality such as stretchability, adhesiveness, and electroconductivity on a si...
Electronic skin is driving the next generation of cutting-edge wearable electronic products due to i...
Ionic hydrogels with intrinsic conductivity and stretchability show great potential in flexible elec...
Integrating multifunctionality such as adhesiveness, stretchability, and self-healing ability on a s...
Although conductive hydrogels (CHs) have been investigated as the wearable sensor in recent years, h...
Flexible electronic sensors are attracting more and more attention because of their outstanding flex...
A stable and highly sensitive graphene/hydrogel strain sensor is designed by introducing glycerol as...
The construction of a surface-wrinkled ionic conductive hydrogel with highly stretchable and healabl...
Intelligent skinlike materials have recently attracted tremendous research interests for employing i...
Flexible wearable sensors show great potential for applications in wearable devices, remote health m...
Tactile sensors, namely, flexible devices that sense physical stimuli, have received much attention ...
Summary: Skin-like electronics are developing rapidly to realize a variety of applications such as w...
Ionic gel-based electronic devices are essential in future healthcare/biomedical applications, such ...
Conductive hydrogels, which are considered to be a promising material for human motion detection sen...
Herein, we demonstrate a ternary ionic hydrogel sensor consisting of tannic acid, sodium alginate, a...
Integrating multifunctionality such as stretchability, adhesiveness, and electroconductivity on a si...
Electronic skin is driving the next generation of cutting-edge wearable electronic products due to i...
Ionic hydrogels with intrinsic conductivity and stretchability show great potential in flexible elec...
Integrating multifunctionality such as adhesiveness, stretchability, and self-healing ability on a s...
Although conductive hydrogels (CHs) have been investigated as the wearable sensor in recent years, h...
Flexible electronic sensors are attracting more and more attention because of their outstanding flex...
A stable and highly sensitive graphene/hydrogel strain sensor is designed by introducing glycerol as...
The construction of a surface-wrinkled ionic conductive hydrogel with highly stretchable and healabl...
Intelligent skinlike materials have recently attracted tremendous research interests for employing i...
Flexible wearable sensors show great potential for applications in wearable devices, remote health m...
Tactile sensors, namely, flexible devices that sense physical stimuli, have received much attention ...
Summary: Skin-like electronics are developing rapidly to realize a variety of applications such as w...