This letter reports the fabrication of inkjet-printed thin-film transistor devices employing an electron transport layer incorporating polyethyleneimine for engineering of the interface between In2O3 semiconductor and Ag source/drain contacts, resulting in significant enhancement of saturation mobility by two orders of magnitude, from ∼0.03 cm2 (V s)-1 to ∼3.0 cm2 (V s)-1. The improvement is assigned to the lowered contact resistance between the source/drain electrodes and the underlying layers. The results are of importance for fully-printed oxide TFTs and circuits.</p
Ability to digitally control the amount of a deposited material is one of the many advantages of ink...
The work described in this thesis is concerned with increasing the mobility of inorganic, solution p...
Inkjet printing is a promising technology for the scalable fabrication of organic electronics becaus...
This letter reports the fabrication of inkjet-printed thin-film transistor devices employing an elec...
Additive solution process patterning, such as inkjet printing, is desirable for high-throughput roll...
Printing technologies for thin-film transistors (TFTs) have recently attracted much interest owing t...
As demands for high pixel densities and wearable forms of displays increase, high-resolution printin...
Additive solution process patterning, such as inkjet printing, is desirable for high-throughput roll...
In this paper, we report contact properties of fully inkjet-printed organic thin-film transistors (O...
Additive solution process patterning, such as inkjet printing, is desirable for high-throughput roll...
A facile method for realizing both inkjet printed electrodes with improved resolution and patterned ...
Thin Film Transistor (TFT) technology has contributed to the advancement of the display industry for...
International audienceIn this paper, we demonstrate how to enhance performances of Organic Thin-Film...
The work described in this thesis is concerned with increasing the mobility of inorganic, solution p...
Ability to digitally control the amount of a deposited material is one of the many advantages of ink...
Ability to digitally control the amount of a deposited material is one of the many advantages of ink...
The work described in this thesis is concerned with increasing the mobility of inorganic, solution p...
Inkjet printing is a promising technology for the scalable fabrication of organic electronics becaus...
This letter reports the fabrication of inkjet-printed thin-film transistor devices employing an elec...
Additive solution process patterning, such as inkjet printing, is desirable for high-throughput roll...
Printing technologies for thin-film transistors (TFTs) have recently attracted much interest owing t...
As demands for high pixel densities and wearable forms of displays increase, high-resolution printin...
Additive solution process patterning, such as inkjet printing, is desirable for high-throughput roll...
In this paper, we report contact properties of fully inkjet-printed organic thin-film transistors (O...
Additive solution process patterning, such as inkjet printing, is desirable for high-throughput roll...
A facile method for realizing both inkjet printed electrodes with improved resolution and patterned ...
Thin Film Transistor (TFT) technology has contributed to the advancement of the display industry for...
International audienceIn this paper, we demonstrate how to enhance performances of Organic Thin-Film...
The work described in this thesis is concerned with increasing the mobility of inorganic, solution p...
Ability to digitally control the amount of a deposited material is one of the many advantages of ink...
Ability to digitally control the amount of a deposited material is one of the many advantages of ink...
The work described in this thesis is concerned with increasing the mobility of inorganic, solution p...
Inkjet printing is a promising technology for the scalable fabrication of organic electronics becaus...