The recent use of cryoprotectant replacement method for solving the easy drying problem of hydrogels has attracted increasing research interest. However, the conductivity decrease of organohydrogels due to the induced insulating solvent limited their electronic applications. Herein, we introduce the Hofmeister effect and electrostatic interaction to generate hydrogen and sodium bonds in the hydrogel. Combined with its double network, an effective charge channel that will not be affected by the solvent replacement, is therefore built. The developed organohydrogel-based single-electrode triboelectric nanogenerator (OHS-TENG) shows low conductivity decrease (one order) and high output (1.02-1.81 W/m(2)), which is much better than reported OHS-...
Hydrogels are biocompatible soft materials that resemble biological tissues more than any other mate...
Ionic hydrogels, a class of intrinsically stretchable and conductive materials, are widely used in s...
Organic electrochemical transistors (OECTs) are being intensively developed for applications in elec...
The recent use of cryoprotectant replacement method for solving the easy drying problem of hydrogels...
A major challenge accompanying the booming next-generation soft electronics is providing correspondi...
In recent years, with the appearance of the triboelectric nanogenerator (TENG), there has been a wav...
Recently, triboelectric nanogenerators (TENGs) have been promoted as an effective technique for ambi...
Abstract With the accelerating advancement of distributed sensors and portable electronic devices in...
Hydrogels with high electrical conductivity and mechanical stretchability are promising materials fo...
To reduce the environmental impact of non-biodegradable electronic waste, developing sustainable tec...
Wearable and implantable devices hold great promise to transform the society by making healthcare co...
Electricity is indispensable in our daily life and batteries are the widely used energy sources for ...
Recently developed triboelectric nanogenerators (TENGs) act as a promising power source for self‐pow...
High conductivity, large mechanical strength, and elongation are important parameters for soft elect...
Inspired by the freezing tolerance performances found in living creatures, an effect approach is pre...
Hydrogels are biocompatible soft materials that resemble biological tissues more than any other mate...
Ionic hydrogels, a class of intrinsically stretchable and conductive materials, are widely used in s...
Organic electrochemical transistors (OECTs) are being intensively developed for applications in elec...
The recent use of cryoprotectant replacement method for solving the easy drying problem of hydrogels...
A major challenge accompanying the booming next-generation soft electronics is providing correspondi...
In recent years, with the appearance of the triboelectric nanogenerator (TENG), there has been a wav...
Recently, triboelectric nanogenerators (TENGs) have been promoted as an effective technique for ambi...
Abstract With the accelerating advancement of distributed sensors and portable electronic devices in...
Hydrogels with high electrical conductivity and mechanical stretchability are promising materials fo...
To reduce the environmental impact of non-biodegradable electronic waste, developing sustainable tec...
Wearable and implantable devices hold great promise to transform the society by making healthcare co...
Electricity is indispensable in our daily life and batteries are the widely used energy sources for ...
Recently developed triboelectric nanogenerators (TENGs) act as a promising power source for self‐pow...
High conductivity, large mechanical strength, and elongation are important parameters for soft elect...
Inspired by the freezing tolerance performances found in living creatures, an effect approach is pre...
Hydrogels are biocompatible soft materials that resemble biological tissues more than any other mate...
Ionic hydrogels, a class of intrinsically stretchable and conductive materials, are widely used in s...
Organic electrochemical transistors (OECTs) are being intensively developed for applications in elec...