Alexios Papadimitratos
University of Texas at Dallas
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Publication
Featured researches published by Alexios Papadimitratos.
Nano Letters | 2010
Antti Kaskela; Albert G. Nasibulin; Marina Y. Timmermans; Brad Aitchison; Alexios Papadimitratos; Ying Tian; Zhen Zhu; Hua Jiang; David P. Brown; Anvar Zakhidov; Esko I. Kauppinen
We demonstrate an aerosol CVD process to dry deposit large-area SWCNT networks with tunable conductivity and optical transmittance on a wide range of substrates including flexible polymers. These SWCNT networks can be chemically doped to reach a sheet resistance of as low as 110 Ω/⟨ at 90% optical transmittance. A wide application potential of these networks is demonstrated by fabricating SWCNT network-based devices such as a transparent capacitive touch sensors, thin-film transistors (TFTs), and bright organic light-emitting diodes (OLEDs).
Journal of Applied Physics | 2015
Jorge Oliva; Alexios Papadimitratos; H. Desirena; Elder De la Rosa; Anvar Zakhidov
Parallel tandem organic light emitting devices (OLEDs) were fabricated with transparent multiwall carbon nanotube sheets (MWCNT) and thin metal films (Al,Ag) as interlayers. In parallel monolithic tandem architecture, the MWCNT (or metallic films) interlayers are an active electrode which injects similar charges into subunits. In the case of parallel tandems with common anode (C.A.) of this study, holes are injected into top and bottom subunits from the common interlayer electrode; whereas in the configuration of common cathode (C.C.), electrons are injected into the top and bottom subunits. Both subunits of the tandem can thus be monolithically connected functionally in an active structure in which each subunit can be electrically addressed separately. Our tandem OLEDs have a polymer as emitter in the bottom subunit and a small molecule emitter in the top subunit. We also compared the performance of the parallel tandem with that of in series and the additional advantages of the parallel architecture over the in-series were: tunable chromaticity, lower voltage operation, and higher brightness. Finally, we demonstrate that processing of the MWCNT sheets as a common anode in parallel tandems is an easy and low cost process, since their integration as electrodes in OLEDs is achieved by simple dry lamination process.
Solar Energy | 2016
Alexios Papadimitratos; Sarvenaz Sobhansarbandi; Vladimir A. Pozdin; Anvar A. Zakhidov; Fatemeh Hassanipour
Macromolecular Chemistry and Physics | 2013
Sussana Elkassih; Prakash Sista; Harsha D. Magurudeniya; Alexios Papadimitratos; Anvar A. Zakhidov; Michael C. Biewer; Mihaela C. Stefan
Solar Energy | 2017
Sarvenaz Sobhansarbandi; Patricia M. Martinez; Alexios Papadimitratos; Anvar A. Zakhidov; Fatemeh Hassanipour
Journal of Physical Chemistry B | 2013
Emir Hubijar; Alexios Papadimitratos; Doyun Lee; Anvar A. Zakhidov; John P. Ferraris
Physica Status Solidi (a) | 2017
Jorge Oliva; Alexios Papadimitratos; Elder de la Rosa Cruz; Anvar A. Zakhidov
Physica Status Solidi (a) | 2014
Jorge Oliva; Alexios Papadimitratos; Elder De la Rosa; Anvar Zakhidov
Carbon | 2017
Patricia M. Martinez; Vladimir A. Pozdin; Alexios Papadimitratos; William Holmes; Fatemeh Hassanipour; Anvar A. Zakhidov
Eurasian Chemico-Technological Journal | 2016
Patricia M. Martinez; Vladimir A. Pozdin; Alexios Papadimitratos; William Holmes; Fatemeh Hassanipour; George Dover; Anvar A. Zakhidov