Herein, we demonstrate a ternary ionic hydrogel sensor consisting of tannic acid, sodium alginate, and covalent cross-linked polyacrylamide as skin-mountable and wearable sensors. Based on the multiple weak H-bonds and synergistic effects between the three components, the as-prepared hybrid hydrogel exhibits ultrastretchability with high elasticity, good self-healing, excellent conformability, and high self-adhesiveness to diverse substrates both in air and underwater. More importantly, the ternary hydrogel exhibits high strain sensitivity especially under subtle strains with a gauge factor of 2.0, which is close to the theoretical value of the ionic hydrogel sensors; an extremely large workable range of strain (0.05–2100%); and a low opera...
Conductive hydrogels are ideal for flexible sensors, but it is still a challenge to produce such hyd...
Flexible electronic sensors are attracting more and more attention because of their outstanding flex...
Hydrogel-based flexible strain sensors have been known for their excellent ability to convert differ...
Herein, we demonstrate a ternary ionic hydrogel sensor consisting of tannic acid, sodium alginate, a...
Multifunctional adhesive hydrogels have great potential in flexible wearable materials, smart wearab...
Flexible sensors which are highly stretchable, sensitive, and self-adhesive are critically required ...
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...
There is a growing demand for flexible and stretchable strain/pressure sensors for different applica...
Ionic hydrogels with intrinsic conductivity and stretchability show great potential in flexible elec...
Ionic gel-based electronic devices are essential in future healthcare/biomedical applications, such ...
Ionotronic hydrogels have attracted significant attention in emerging fields such as wearable device...
Integrating multifunctionality such as adhesiveness, stretchability, and self-healing ability on a s...
It is desired to create skin strain sensors composed of multifunctional conductive hydrogels with ex...
Hydrogels exhibit ideal flexibility and biocompatibility, which have attracted the attention of many...
Conductive hydrogels are ideal for flexible sensors, but it is still a challenge to produce such hyd...
Flexible electronic sensors are attracting more and more attention because of their outstanding flex...
Hydrogel-based flexible strain sensors have been known for their excellent ability to convert differ...
Herein, we demonstrate a ternary ionic hydrogel sensor consisting of tannic acid, sodium alginate, a...
Multifunctional adhesive hydrogels have great potential in flexible wearable materials, smart wearab...
Flexible sensors which are highly stretchable, sensitive, and self-adhesive are critically required ...
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...
There is a growing demand for flexible and stretchable strain/pressure sensors for different applica...
Ionic hydrogels with intrinsic conductivity and stretchability show great potential in flexible elec...
Ionic gel-based electronic devices are essential in future healthcare/biomedical applications, such ...
Ionotronic hydrogels have attracted significant attention in emerging fields such as wearable device...
Integrating multifunctionality such as adhesiveness, stretchability, and self-healing ability on a s...
It is desired to create skin strain sensors composed of multifunctional conductive hydrogels with ex...
Hydrogels exhibit ideal flexibility and biocompatibility, which have attracted the attention of many...
Conductive hydrogels are ideal for flexible sensors, but it is still a challenge to produce such hyd...
Flexible electronic sensors are attracting more and more attention because of their outstanding flex...
Hydrogel-based flexible strain sensors have been known for their excellent ability to convert differ...