Intrinsically stretchable organic field-effect transistors (STOFETs) that behave much like skin, have garnered widespread attention and demonstrated potential to more comfortable wearing electronics. Despite considerable efforts being exerted in stretchable hybrid polymeric semiconductors to achieve high-mobility and high-stretchability STOFETs, carbon nanotubes (CNTs) as ideal electrode materials, its interfacial quality seldom attracts research interests. Herein, we demonstrate a novel and general strategy on flexible CNT-based heterojunction electrodes by pentacene modification layer to enable high-performance and functional STOFETs. Pentacene transition layer can reduce the surface roughness and tune the heterogeneity of functional grou...
A thin and stretchable polymer layer can be fabricated over large areas with high uniformity using a...
ii Discovering scalable routes to fabricate large scale electronic devices on flexible substrates ha...
Carbon nanotubes (CNTs) are a promising material for use as a flexible electrode in wearable energy ...
We show that the performance of pentacene transistors can be significantly improved by maximizing th...
Despite recent progress in producing transparent and bendable thin-film transistors using graphene a...
Abstract Organic semiconductors offer the opportunity to develop intrinsically stretchable skin‐like...
Organic thin-film transistor (TFT)-based pressure sensors have received huge attention for wearable ...
Field-effect transistors (FETs) that are stretchable up to 50% without appreciable degradation in pe...
Thin-film field-effect transistor is a fundamental component behind various mordern electronics. The...
Organic field effect transistors (OFETs) are of significant research interest due to their promising...
a b s t r a c t Airbrushed single walled carbon nanotube (SWCNT) thin films with sheet resistivity &...
Carbon nanotubes (CNTs) are a promising material for use as a flexible electrode in wearable energy ...
The pursuit of intelligent optoelectronics could have profound implications on our future daily life...
Carbon nanotube (CNT)-based flexible sensors have been intensively developed for physical sensing. H...
We fabricated organic field effect transistors (OFETs) by directly growing poly (3-hexylthiophne) (P...
A thin and stretchable polymer layer can be fabricated over large areas with high uniformity using a...
ii Discovering scalable routes to fabricate large scale electronic devices on flexible substrates ha...
Carbon nanotubes (CNTs) are a promising material for use as a flexible electrode in wearable energy ...
We show that the performance of pentacene transistors can be significantly improved by maximizing th...
Despite recent progress in producing transparent and bendable thin-film transistors using graphene a...
Abstract Organic semiconductors offer the opportunity to develop intrinsically stretchable skin‐like...
Organic thin-film transistor (TFT)-based pressure sensors have received huge attention for wearable ...
Field-effect transistors (FETs) that are stretchable up to 50% without appreciable degradation in pe...
Thin-film field-effect transistor is a fundamental component behind various mordern electronics. The...
Organic field effect transistors (OFETs) are of significant research interest due to their promising...
a b s t r a c t Airbrushed single walled carbon nanotube (SWCNT) thin films with sheet resistivity &...
Carbon nanotubes (CNTs) are a promising material for use as a flexible electrode in wearable energy ...
The pursuit of intelligent optoelectronics could have profound implications on our future daily life...
Carbon nanotube (CNT)-based flexible sensors have been intensively developed for physical sensing. H...
We fabricated organic field effect transistors (OFETs) by directly growing poly (3-hexylthiophne) (P...
A thin and stretchable polymer layer can be fabricated over large areas with high uniformity using a...
ii Discovering scalable routes to fabricate large scale electronic devices on flexible substrates ha...
Carbon nanotubes (CNTs) are a promising material for use as a flexible electrode in wearable energy ...