An intrinsically stretchable rubbery semiconductor with high mobility is critical to the realization of high-performance stretchable electronics and integrated devices for many applications where large mechanical deformation or stretching is involved. Here, we report fully rubbery integrated electronics from a rubbery semiconductor with a high effective mobility, obtained by introducing metallic carbon nanotubes into a rubbery semiconductor composite. This enhancement in effective carrier mobility is enabled by providing fast paths and, therefore, a shortened carrier transport distance. Transistors and their arrays fully based on intrinsically stretchable electronic materials were developed, and they retained electrical performances without...
A thin and stretchable polymer layer can be fabricated over large areas with high uniformity using a...
Abstract The rapid-developing soft robots and wearable devices require flexible conductive materials...
This dissertation reports a diverse range of new components for the fabrication of soft flexible, st...
Stretchable electronics has expanded the application scope of the electronics and sensors particular...
To eliminate the mechanical strain on nonstretchable electronic materials while being stretched, the...
A rubber-like stretchable semiconductor with high carrier mobility is the most important yet challen...
A general strategy to impart mechanical stretchability to stretchable electronics involves engineeri...
Designing intrinsically stretchable semiconducting polymers with suitable charge transport and mecha...
The development and mechanical characterization of a novel technology for stretchable electronics is...
The primary developing trends in flexible and stretchable electronics involve the innovation of mate...
The pursuit of intelligent optoelectronics could have profound implications on our future daily life...
Next-generation wearable electronics require enhanced mechanical robustness and device complexity. B...
The next materials challenge in organic stretchable electronics is the development of a fully degrad...
Next-generation wearable electronics require enhanced mechanical robustness and device complexity. B...
Stretchable electronics is one of the transformative pillars of future flexible electronics. As a re...
A thin and stretchable polymer layer can be fabricated over large areas with high uniformity using a...
Abstract The rapid-developing soft robots and wearable devices require flexible conductive materials...
This dissertation reports a diverse range of new components for the fabrication of soft flexible, st...
Stretchable electronics has expanded the application scope of the electronics and sensors particular...
To eliminate the mechanical strain on nonstretchable electronic materials while being stretched, the...
A rubber-like stretchable semiconductor with high carrier mobility is the most important yet challen...
A general strategy to impart mechanical stretchability to stretchable electronics involves engineeri...
Designing intrinsically stretchable semiconducting polymers with suitable charge transport and mecha...
The development and mechanical characterization of a novel technology for stretchable electronics is...
The primary developing trends in flexible and stretchable electronics involve the innovation of mate...
The pursuit of intelligent optoelectronics could have profound implications on our future daily life...
Next-generation wearable electronics require enhanced mechanical robustness and device complexity. B...
The next materials challenge in organic stretchable electronics is the development of a fully degrad...
Next-generation wearable electronics require enhanced mechanical robustness and device complexity. B...
Stretchable electronics is one of the transformative pillars of future flexible electronics. As a re...
A thin and stretchable polymer layer can be fabricated over large areas with high uniformity using a...
Abstract The rapid-developing soft robots and wearable devices require flexible conductive materials...
This dissertation reports a diverse range of new components for the fabrication of soft flexible, st...