Hydrogels of flexibility, strength, and conductivity have demonstrated broad applications in wearable electronics and soft robotics. However, it is still a challenge to fabricate conductive hydrogels with high strength massively and economically. Herein, a simple strategy is proposed to design a strong ionically conductive hydrogel. This ion-conducting hydrogel was obtained under the synergistic action by salting out the frozen mixture of polyvinyl alcohol (PVA) and graphene oxide (GO) using a high concentration of sodium chloride solution. The developed hydrogel containing only 5 wt% PVA manifests good tensile stress (65 kPa) and elongation (180%). Meanwhile, the PVA matrix doped with a small amount of GO formed uniformly porous ion channe...
Flexible sensors which are highly stretchable, sensitive, and self-adhesive are critically required ...
Conductive hydrogel combined with Ag/AgCl electrode is widely used in the acquisition of bio-signals...
Developing stretchable/wearable strain sensors in different application scenarios is a global demand...
Hydrogels of flexibility, strength, and conductivity have demonstrated broad applications in wearabl...
High conductivity, large mechanical strength, and elongation are important parameters for soft elect...
Although conductive hydrogels (CHs) have been investigated as the wearable sensor in recent years, h...
Highly stretchable electrically conductive hydrogels have been extensively researched in recent year...
Conductive hydrogel-based wearable strain sensors with tough, stretchable, self-recoverable, and hig...
Ionic conductive hydrogels used as flexible wearable sensor devices have attracted considerable atte...
Highly stretchable electrically conductive hydrogels have been extensively researched in recent year...
Currently, stretchable hydrogel has attracted great attention in the field of wearable flexible sens...
Conductive, stretchable, environmentally‐friendly, and strain‐sensitive elastomers are attracting im...
Conductive hydrogels have important potential in biosensors, bioactuators, and health recording elec...
Ionic hydrogels with intrinsic conductivity and stretchability show great potential in flexible elec...
Nanocellulose-reinforced ionic conductive hydrogels were prepared using cellulose nanofiber (CNF) an...
Flexible sensors which are highly stretchable, sensitive, and self-adhesive are critically required ...
Conductive hydrogel combined with Ag/AgCl electrode is widely used in the acquisition of bio-signals...
Developing stretchable/wearable strain sensors in different application scenarios is a global demand...
Hydrogels of flexibility, strength, and conductivity have demonstrated broad applications in wearabl...
High conductivity, large mechanical strength, and elongation are important parameters for soft elect...
Although conductive hydrogels (CHs) have been investigated as the wearable sensor in recent years, h...
Highly stretchable electrically conductive hydrogels have been extensively researched in recent year...
Conductive hydrogel-based wearable strain sensors with tough, stretchable, self-recoverable, and hig...
Ionic conductive hydrogels used as flexible wearable sensor devices have attracted considerable atte...
Highly stretchable electrically conductive hydrogels have been extensively researched in recent year...
Currently, stretchable hydrogel has attracted great attention in the field of wearable flexible sens...
Conductive, stretchable, environmentally‐friendly, and strain‐sensitive elastomers are attracting im...
Conductive hydrogels have important potential in biosensors, bioactuators, and health recording elec...
Ionic hydrogels with intrinsic conductivity and stretchability show great potential in flexible elec...
Nanocellulose-reinforced ionic conductive hydrogels were prepared using cellulose nanofiber (CNF) an...
Flexible sensors which are highly stretchable, sensitive, and self-adhesive are critically required ...
Conductive hydrogel combined with Ag/AgCl electrode is widely used in the acquisition of bio-signals...
Developing stretchable/wearable strain sensors in different application scenarios is a global demand...