Stretchable electronics has expanded the application scope of the electronics and sensors particularly for health monitors, medical implants, artificial skins and human-machine interfaces. To accommodate the mechanical stretchability to nonstretchable electronic materials, the structural engineering design from special mechanical structures or architectures has been widely exploited. An alternative route to eliminating the burden of constructing dedicated architectures and the associated sophisticated fabrication processes is to build stretchable electronics from rubbery electronic materials, which have potential toward scalable manufacturing, high-density device integration, and large strain tolerance. Here, we report a low voltage operati...
Stretchable hybrid electronics (SHE) that combine high-performance rigid electronic devices with str...
Electronic systems that offer elastic mechanical responses to high-strain deformations are of growin...
Next-generation wearable electronics require enhanced mechanical robustness and device complexity. B...
To eliminate the mechanical strain on nonstretchable electronic materials while being stretched, the...
An intrinsically stretchable rubbery semiconductor with high mobility is critical to the realization...
A general strategy to impart mechanical stretchability to stretchable electronics involves engineeri...
A thin and stretchable polymer layer can be fabricated over large areas with high uniformity using a...
The development and mechanical characterization of a novel technology for stretchable electronics is...
Electronics for wearable applications require soft, flexible, and stretchable materials and designs ...
A rubber-like stretchable semiconductor with high carrier mobility is the most important yet challen...
The primary developing trends in flexible and stretchable electronics involve the innovation of mate...
Electronics for wearable applications require soft, flexible, and stretchable materials and designs ...
<p>Stretchable electronics is an exciting new field of developing technology, allowing devices to un...
This dissertation reports a diverse range of new components for the fabrication of soft flexible, st...
Stretchable electronics, such as stretchable electrodes and stretchable strain sensors, is vital for...
Stretchable hybrid electronics (SHE) that combine high-performance rigid electronic devices with str...
Electronic systems that offer elastic mechanical responses to high-strain deformations are of growin...
Next-generation wearable electronics require enhanced mechanical robustness and device complexity. B...
To eliminate the mechanical strain on nonstretchable electronic materials while being stretched, the...
An intrinsically stretchable rubbery semiconductor with high mobility is critical to the realization...
A general strategy to impart mechanical stretchability to stretchable electronics involves engineeri...
A thin and stretchable polymer layer can be fabricated over large areas with high uniformity using a...
The development and mechanical characterization of a novel technology for stretchable electronics is...
Electronics for wearable applications require soft, flexible, and stretchable materials and designs ...
A rubber-like stretchable semiconductor with high carrier mobility is the most important yet challen...
The primary developing trends in flexible and stretchable electronics involve the innovation of mate...
Electronics for wearable applications require soft, flexible, and stretchable materials and designs ...
<p>Stretchable electronics is an exciting new field of developing technology, allowing devices to un...
This dissertation reports a diverse range of new components for the fabrication of soft flexible, st...
Stretchable electronics, such as stretchable electrodes and stretchable strain sensors, is vital for...
Stretchable hybrid electronics (SHE) that combine high-performance rigid electronic devices with str...
Electronic systems that offer elastic mechanical responses to high-strain deformations are of growin...
Next-generation wearable electronics require enhanced mechanical robustness and device complexity. B...