The design and synthesis of conductive hydrogels with antifreezing, long-term stable, highly sensitive, self-healing, and reusable is a critical procedure to enable applications in flexible electronics, medical monitoring, soft robotics, etc. Herein, a novel zwitterionic composite hydrogel possessing antifreezing, fast self-healing performance, water retention, and adhesion was synthesized via a simple one-pot method. LiCl, as an electrolyte and antifreeze, was promoted to dissociate under the electrostatic interaction with zwitterions, resulting in the composite hydrogels with high electrical conductivity (7.95 S/m) and excellent antifreeze ability (−45.3 °C). Meanwhile, the composite hydrogels could maintain 97% of the initial water conte...
Skin-inspired sensors have great potential applications in wearable and implantable devices to monit...
Water-rich conductive hydrogels with excellent stretchability are promising in strain sensors due to...
Due to the good conductivity and adjustable mechanical properties, ionic conductive hydrogel is cons...
It is desired to create skin strain sensors composed of multifunctional conductive hydrogels with ex...
Conductive hydrogels had demonstrated significant prospect in the field of wearable devices. However...
Although conductive hydrogels (CHs) have been investigated as the wearable sensor in recent years, h...
Hydrogels exhibit ideal flexibility and biocompatibility, which have attracted the attention of many...
The versatile properties make hydrogels a potential multipurpose material that finds wide applicatio...
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...
Conductive hydrogels have gained a great deal of interest in the flexible electronics industry becau...
Currently, stretchable hydrogel has attracted great attention in the field of wearable flexible sens...
Hydrogel-based flexible strain sensors have been known for their excellent ability to convert differ...
Conductive hydrogels are ideal for flexible sensors, but it is still a challenge to produce such hyd...
Ionic hydrogels with intrinsic conductivity and stretchability show great potential in flexible elec...
Skin-inspired sensors have great potential applications in wearable and implantable devices to monit...
Water-rich conductive hydrogels with excellent stretchability are promising in strain sensors due to...
Due to the good conductivity and adjustable mechanical properties, ionic conductive hydrogel is cons...
It is desired to create skin strain sensors composed of multifunctional conductive hydrogels with ex...
Conductive hydrogels had demonstrated significant prospect in the field of wearable devices. However...
Although conductive hydrogels (CHs) have been investigated as the wearable sensor in recent years, h...
Hydrogels exhibit ideal flexibility and biocompatibility, which have attracted the attention of many...
The versatile properties make hydrogels a potential multipurpose material that finds wide applicatio...
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...
Conductive hydrogels have gained a great deal of interest in the flexible electronics industry becau...
Currently, stretchable hydrogel has attracted great attention in the field of wearable flexible sens...
Hydrogel-based flexible strain sensors have been known for their excellent ability to convert differ...
Conductive hydrogels are ideal for flexible sensors, but it is still a challenge to produce such hyd...
Ionic hydrogels with intrinsic conductivity and stretchability show great potential in flexible elec...
Skin-inspired sensors have great potential applications in wearable and implantable devices to monit...
Water-rich conductive hydrogels with excellent stretchability are promising in strain sensors due to...
Due to the good conductivity and adjustable mechanical properties, ionic conductive hydrogel is cons...