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PL
Dokonano przeglądu technik wytwarzania elementów i urządzeń elektronicznych z roztworów i atramentów materiałów organicznych. Zaprezentowano warstwy przewodzące z mieszaniny poli(3,4-dioksyetylenotiofenu) z polistyrenem sulfonowanym (PEDOT/PSS) i ścieżki ze srebra wytworzone na podłożu polimerowym, metodą druku strumieniowego w warunkach przemysłowych. Postęp i ograniczenia w zastosowaniu materiałów organicznych w drukowanej elektronice wykazano na przykładach: tranzystora polowego, diody i tranzystora elektroluminescencyjnego, wytworzonych w warunkach laboratoryjnych.
EN
The review of the techniques for the fabrication of the electronic elements and devices based on organic solutions and inks was done. There was presented the conductive layers of poly(3,4-ethylenedioxythio-phene)/poly(styrenesulfonate) blend (PEDOT/PSS) and silver paths fabricated under industrial conditions on the flexible substrates. The progress and limitations of the organic materials applications for printed electronics were shown based on examples of field effect transistors, electroluminescent diodes and transistors. The presented devices were prepared under laboratory conditions.
2
Content available remote PEDOT:PSS thin film for photovoltaic application
EN
Purpose: The aim of this paper was to investigate changes in surface morphology and optical parameters of thin films of poly(3,4-ethylenedioxythiophene) poly(styrenesulfonate) (PEDOT:PSS). Thin films were prepared using spin coating method. Design/methodology/approach: The thin films of PEDOT:PSS was investigate by Raman scattering technique in Raman spectrometer. The changes in surface topography were observed with the atomic force microscope AFM XE-100. The results of roughness have been prepared in the software XEI Park Systems. The measurement of optical parameter was performed using spectrometer UV/VIS and spectroscopic ellipsometer. Findings: Results and their analysis allow to conclude that the PEDOT:PSS solution concentration and spin speed, an important factor in spin coating technology, have a significant influence on surface morphology and optical reflection of thin films. Practical implications: Knowledge about the sol gel PEDOT:PSS optical parameters and the possibility of obtaining a uniform thin films show that it can be good material for photovoltaic and optoelectronic devices. Originality/value: The paper presents some researches of PEDOT:PSS thin films deposited by spin coating method on glass substrate.
3
Content available remote PEDOT as an alignment layer and electrode in AFLC devices
EN
PEDOT [Poly (3, 4-ethylenedioxythiophene) poly (styrenesulfonate)] is a material typically used organic light emission displays (OLEDs) manufactured as a conductor, or rather, as a hole injector. In this paper, three different issues have been studied: the use of rubbed PEDOT as alignment layer, the resistivity of the applied PEDOT layers, i.e., its potential as a replacement of ITO electrodes, and the induction of asymmetry in the electro-optical response of liquid crystal cells by assembling the display with dissimilar coated aligning surfaces - PEDOT on one side and buffed nylon on the counter electrode.
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