Conductive hydrogel-based wearable strain sensors with tough, stretchable, self-recoverable, and highly sensitive properties are highly demanded for applications in electronic skin and human-machine interface. However, currently, hydrogel-based strain sensors put forward higher requirements on their biocompatibility, mechanical strength, and sensitivity. Herein, we report a poly(vinyl alcohol)/phytic acid/amino-polyhedral oligomeric silsesquioxane (PVA/PA/NH2-POSS) conductive composite hydrogel prepared via a facile freeze-thaw cycle method. Within this hydrogel, PA acts as a cross-linking agent and ionizes hydrogen ions to endow the material with ionic conductivity, while NH2-POSS acts as a second cross-linking agent by increasing the cros...
Polyelectrolyte complex hydrogel (PECH) is an emerging ion conductive hydrogel made from non-covalen...
The mechanical performance is critical for hydrogels that are used as strain sensors. p-Aramid nanof...
Flexible electronic sensors are attracting more and more attention because of their outstanding flex...
Ionic hydrogels with intrinsic conductivity and stretchability show great potential in flexible elec...
Although conductive hydrogels (CHs) have been investigated as the wearable sensor in recent years, h...
Conductive, stretchable, environmentally‐friendly, and strain‐sensitive elastomers are attracting im...
Conductive hydrogel, as a promising candidate material, is ideal for multifunctional strain sensors ...
Conducting polymer-based hydrogels (CPHs) are novel materials that take advantage of both conducting...
Biocompatible conductive hydrogels with intrinsic flexibility, high sensitivity, linearity and outst...
Hydrogels of flexibility, strength, and conductivity have demonstrated broad applications in wearabl...
Currently, stretchable hydrogel has attracted great attention in the field of wearable flexible sens...
Abstract Conductive hydrogels exhibit high potential in the fields of wearable sensors, healthcare m...
Hydrogels with adhesion and conductivity properties have certain applications in the field of strain...
Electronic skin is driving the next generation of cutting-edge wearable electronic products due to i...
Hydrogel electronics have attracted growing interest for emerging applications in personal healthcar...
Polyelectrolyte complex hydrogel (PECH) is an emerging ion conductive hydrogel made from non-covalen...
The mechanical performance is critical for hydrogels that are used as strain sensors. p-Aramid nanof...
Flexible electronic sensors are attracting more and more attention because of their outstanding flex...
Ionic hydrogels with intrinsic conductivity and stretchability show great potential in flexible elec...
Although conductive hydrogels (CHs) have been investigated as the wearable sensor in recent years, h...
Conductive, stretchable, environmentally‐friendly, and strain‐sensitive elastomers are attracting im...
Conductive hydrogel, as a promising candidate material, is ideal for multifunctional strain sensors ...
Conducting polymer-based hydrogels (CPHs) are novel materials that take advantage of both conducting...
Biocompatible conductive hydrogels with intrinsic flexibility, high sensitivity, linearity and outst...
Hydrogels of flexibility, strength, and conductivity have demonstrated broad applications in wearabl...
Currently, stretchable hydrogel has attracted great attention in the field of wearable flexible sens...
Abstract Conductive hydrogels exhibit high potential in the fields of wearable sensors, healthcare m...
Hydrogels with adhesion and conductivity properties have certain applications in the field of strain...
Electronic skin is driving the next generation of cutting-edge wearable electronic products due to i...
Hydrogel electronics have attracted growing interest for emerging applications in personal healthcar...
Polyelectrolyte complex hydrogel (PECH) is an emerging ion conductive hydrogel made from non-covalen...
The mechanical performance is critical for hydrogels that are used as strain sensors. p-Aramid nanof...
Flexible electronic sensors are attracting more and more attention because of their outstanding flex...