Results 41 to 50 of about 83,894 (197)

Printed dose-recording tag based on organic complementary circuits and ferroelectric nonvolatile memories. [PDF]

open access: yes, 2015
We have demonstrated a printed electronic tag that monitors time-integrated sensor signals and writes to nonvolatile memories for later readout. The tag is additively fabricated on flexible plastic foil and comprises a thermistor divider, complementary ...
Bröms, Per   +10 more
core   +2 more sources

Incorporating aligned carbon nanotube electrode arrays in organic thin-film transistors

open access: yesAIP Advances, 2019
We introduce a very simple technique to obtain aligned carbon nanotube arrays tested in organic thin-film transistors based on poly[2-methoxy-5-(2-ethylhexyloxy)-1,4-phenylenevinylene] (MEH-PPV) as the organic semiconductor.
Zhihui Yi, Jonathan Sayago
doaj   +1 more source

The Effect of Transfer Printing on Pentacene Thin-Film Crystal Structure

open access: yes, 2006
The thermal deposition and transfer Printing method had been used to produce pentacene thin-films on SiO2/Si and plastic substrates (PMMA and PVP), respectively. X-ray diffraction patterns of pentacene thin films showed reflections associated with highly
Cullity E. D.   +5 more
core   +1 more source

Photophysics of pentacene-doped picene thin films [PDF]

open access: yes, 2018
Here were report a study of picene nano-cristalline thin films doped with pentacene molecules. The thin films were grown by supersonic molecular beam deposition with a doping concentration that ranges between less than one molecules of pentacene every ...
Bettotti, Paolo   +7 more
core   +4 more sources

Influence of the gate leakage current on the stability of organic single-crystal field-effect transistors

open access: yes, 2004
We investigate the effect of a small leakage current through the gate insulator on the stability of organic single-crystal field-effect transistors (FETs).
de Boer, R. W. I.   +4 more
core   +3 more sources

Non-Arrhenius conduction due to the interface-trap-induced disorder in X-doped amorphous InXZnO thin-film transistors [PDF]

open access: yes, 2015
Thin film transistors, with channels composed of In-X-Zn oxides, IXZO, with X dopants: Ga, Sb, Be, Mg, Ag, Ca, Al, Ni, and Cu, were fabricated and their I-V characteristics were taken at selected temperatures in the ...
Chroboczek J. A.   +5 more
core   +2 more sources

Electrical Stability and Flicker Noise of Thin-Film Heterojunction FETs on Poly-Si Substrates

open access: yesIEEE Access, 2019
Electrical stability and flicker (1/f) noise of thin-film heterojunction field-effect transistors (HJFETs) comprised of hydrogenated amorphous Si (a-Si:H) gate and hydrogenated crystalline Si (c-Si:H) source and drain regions on small-grain poly-Si ...
Bahman Hekmatshoar
doaj   +1 more source

A Review of the Progress of Thin-Film Transistors and Their Technologies for Flexible Electronics

open access: yesMicromachines, 2021
Flexible electronics enable various technologies to be integrated into daily life and fuel the quests to develop revolutionary applications, such as artificial skins, intelligent textiles, e-skin patches, and on-skin displays. Mechanical characteristics,
Mohammad Javad Mirshojaeian Hosseini   +1 more
doaj   +1 more source

Fabrication and Characterization of Controllable Grain Boundary Arrays in Solution Processed Small Molecule Organic Semiconductor Films

open access: yes, 2012
We have produced solution-processed thin films of 6,13-bis(triisopropyl-silylethynyl) pentacene with grain sizes from a few micrometers up to millimeter scale by lateral crystallization from a rectangular stylus.
Anthony, John E.   +2 more
core   +1 more source

The Effect of Carbon Nanotube/Organic Semiconductor Interfacial Area on the Performance of Organic Transistors [PDF]

open access: yes, 2012
We show that the performance of pentacene transistors can be significantly improved by maximizing the interfacial area at single walled carbon nanotube (SWCNT)/pentacene.
Kang, Narae   +2 more
core   +3 more sources

Home - About - Disclaimer - Privacy