Organic Electropolymerized Multilayers for Light-Emitting Diodes and Displays

In electrochemistry, the carbazole is generally coupled to dimer but not to polymer. This work has reported that organic electropolymerization (OEP) of 4,4′,4″-tri­(N-carbazolyl)­triphenylamine (TCTA) would form a high cross-linked carbazole polymer by its high activity/reversibility and a synchrono...

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Veröffentlicht in:ACS applied materials & interfaces 2020-05, Vol.12 (18), p.20714-20721
Hauptverfasser: Liang, Yiqian, Liu, Cao, Zhao, Manlin, Wang, Rong, Zhang, Donglian, Wang, Cong, Zhou, Lei, Wang, Lei, Xie, Zengqi, Peng, Junbiao, Liu, Linlin
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Sprache:eng
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Zusammenfassung:In electrochemistry, the carbazole is generally coupled to dimer but not to polymer. This work has reported that organic electropolymerization (OEP) of 4,4′,4″-tri­(N-carbazolyl)­triphenylamine (TCTA) would form a high cross-linked carbazole polymer by its high activity/reversibility and a synchronous viscosity control. It has significantly improved the OEP film quality of both hole-transporting and electroluminescent layers in organic light-emitting diodes. As a result, the conductivity and power efficiency of the organic light-emitting diodes with TCTA are eight and four times of that without TCTA. A prototype display device with a 1.7 in. monochrome passive matrix of 58 ppi under the driving chip is successfully fabricated with accurate pixel size and uniform electroluminescence, which shows a great potential of OEP in the electroluminescent application.
ISSN:1944-8244
1944-8252
DOI:10.1021/acsami.9b22456