Performance enhancement in individual field effect transistors (FETs) fabricated using artificially stacked graphene double-layers (bilayers).
Performance enhancement in individual field effect transistors (FETs) fabricated using artificially stacked graphene double-layers (bilayers).
Researchers have demonstrated all-aqueous-printed transparent electrodes and semiconducting layers for high performance, low-cost transistors for flexible electronics applications.
Printable and flexible organic phototransistors with high performance by blending common organic semiconductors with biocompatible polymers.
Researchers from Northwestern University have assembled silicate nanosheets into thin dielectric films for solution-processed field-effect transistors.
Inspired by the mammalian eye, University of Wisconsin-Madison electrical engineers have created the fastest, most responsive, flexible silicon phototransistor ever made.
The same roll-to-roll printing methodologies can be explored for printing of electrochromics, transistor logic and solar cell power units.
Researchers present a new concept for solution-processed low-dimensional metal oxide quasi-superlattice-based transistors with dramatically enhanced electron mobilities.
Recent research in to the biological applications of the organic electrochemical transistor is reviewed in the Journal of Applied Polymer Science
Triazine-based graphitic carbon nitride has the potential to improve transistors used in electronic devices.
Researchers describe the experimental realization of an optical switch controlled by a single photon, allowing light to govern the transmission of light.