Despite recent progress in producing transparent and bendable thin-film transistors using graphene and carbon nanotubes, the development of stretchable devices remains limited either by fragile inorganic oxides or polymer dielectrics with high leakage current. Here we report the fabrication of highly stretchable and transparent field-effect transistors combining graphene/single-walled carbon nanotube (SWCNT) electrodes and a SWCNT-network channel with a geometrically wrinkled inorganic dielectric layer. The wrinkled Al2O3 layer contained effective built-in air gaps with a small gate leakage current of 10-13 A. The resulting devices exhibited an excellent on/off ratio of ∼10 5, a high mobility of ∼40 cm2V-1s-1 and a low operating voltage of ...
ii Discovering scalable routes to fabricate large scale electronic devices on flexible substrates ha...
Development of indium tin oxide-free, flexible transparent conductive electrodes (TCEs) is essential...
Despite recent progress in bendable and stretchable thin-film transistors using novel designs and ma...
A thin and stretchable polymer layer can be fabricated over large areas with high uniformity using a...
Thin-film field-effect transistor is a fundamental component behind various mordern electronics. The...
We report the fabrication of transparent and flexible transistors where both the bottom gate and the...
Field-effect transistors (FETs) that are stretchable up to 50% without appreciable degradation in pe...
Transparent electrodes that can maintain their electrical and optical properties stably against larg...
Transparent electrodes that can maintain their electrical and optical properties stably against larg...
Indium tin oxide-free, flexible transparent electrodes (TEs) are crucial for the future commercializ...
Intrinsically stretchable organic field-effect transistors (STOFETs) that behave much like skin, hav...
Although silicon technology has been the main driving force for miniaturizing device dimensions to i...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
The work describes the first demonstration of fully transparent thin-film-transistors (TFTs) based o...
Electronics for wearable applications require soft, flexible, and stretchable materials and designs ...
ii Discovering scalable routes to fabricate large scale electronic devices on flexible substrates ha...
Development of indium tin oxide-free, flexible transparent conductive electrodes (TCEs) is essential...
Despite recent progress in bendable and stretchable thin-film transistors using novel designs and ma...
A thin and stretchable polymer layer can be fabricated over large areas with high uniformity using a...
Thin-film field-effect transistor is a fundamental component behind various mordern electronics. The...
We report the fabrication of transparent and flexible transistors where both the bottom gate and the...
Field-effect transistors (FETs) that are stretchable up to 50% without appreciable degradation in pe...
Transparent electrodes that can maintain their electrical and optical properties stably against larg...
Transparent electrodes that can maintain their electrical and optical properties stably against larg...
Indium tin oxide-free, flexible transparent electrodes (TEs) are crucial for the future commercializ...
Intrinsically stretchable organic field-effect transistors (STOFETs) that behave much like skin, hav...
Although silicon technology has been the main driving force for miniaturizing device dimensions to i...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
The work describes the first demonstration of fully transparent thin-film-transistors (TFTs) based o...
Electronics for wearable applications require soft, flexible, and stretchable materials and designs ...
ii Discovering scalable routes to fabricate large scale electronic devices on flexible substrates ha...
Development of indium tin oxide-free, flexible transparent conductive electrodes (TCEs) is essential...
Despite recent progress in bendable and stretchable thin-film transistors using novel designs and ma...