Efficient bifunctional materials based on pyrene- and triphenylamine-functionalized dendrimers for electroluminescent devices
© The Royal Society of Chemistry. To realize highly efficient bifunctional blue-light emitting and hole-transporting materials for OLEDs, a series of pyrene- and triphenylamine-peripheral functionalized carbazole dendrimers, namely G1PYR, G2PYR, G1TPA and G2TPA, were designed, synthesized and charac...
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th-cmuir.6653943832-542492018-09-04T10:10:44Z Efficient bifunctional materials based on pyrene- and triphenylamine-functionalized dendrimers for electroluminescent devices T. Keawin N. Prachumrak S. Namuangruk S. Pansay N. Kungwan S. Maensiri S. Jungsuttiwong T. Sudyoadsuk V. Promarak Chemical Engineering Chemistry © The Royal Society of Chemistry. To realize highly efficient bifunctional blue-light emitting and hole-transporting materials for OLEDs, a series of pyrene- and triphenylamine-peripheral functionalized carbazole dendrimers, namely G1PYR, G2PYR, G1TPA and G2TPA, were designed, synthesized and characterized. Especially, G2PYR having four pyrene units substituted on the 2ndgeneration carbazole dendritic scaffold exhibited a strong blue emission with high Tgamorphous and good film-forming properties. Simple structured blue OLED (λEL= 463 nm) using G2PYR as emissive layer and Alq3-based green OLED (λEL= 512 nm) using G2PYR as hole-transporting layer with high luminance efficiencies (η) and low turn-on voltages (Von) of 5.89 cd A-1and 3.1 V, and 5.15 cd A-1and 2.6 V were attained, respectively. 2018-09-04T10:10:02Z 2018-09-04T10:10:02Z 2015-08-21 Journal 20462069 2-s2.0-84940973375 10.1039/c5ra07161e https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84940973375&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/54249 |
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Chemical Engineering Chemistry T. Keawin N. Prachumrak S. Namuangruk S. Pansay N. Kungwan S. Maensiri S. Jungsuttiwong T. Sudyoadsuk V. Promarak Efficient bifunctional materials based on pyrene- and triphenylamine-functionalized dendrimers for electroluminescent devices |
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© The Royal Society of Chemistry. To realize highly efficient bifunctional blue-light emitting and hole-transporting materials for OLEDs, a series of pyrene- and triphenylamine-peripheral functionalized carbazole dendrimers, namely G1PYR, G2PYR, G1TPA and G2TPA, were designed, synthesized and characterized. Especially, G2PYR having four pyrene units substituted on the 2ndgeneration carbazole dendritic scaffold exhibited a strong blue emission with high Tgamorphous and good film-forming properties. Simple structured blue OLED (λEL= 463 nm) using G2PYR as emissive layer and Alq3-based green OLED (λEL= 512 nm) using G2PYR as hole-transporting layer with high luminance efficiencies (η) and low turn-on voltages (Von) of 5.89 cd A-1and 3.1 V, and 5.15 cd A-1and 2.6 V were attained, respectively. |
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Journal |
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T. Keawin N. Prachumrak S. Namuangruk S. Pansay N. Kungwan S. Maensiri S. Jungsuttiwong T. Sudyoadsuk V. Promarak |
author_facet |
T. Keawin N. Prachumrak S. Namuangruk S. Pansay N. Kungwan S. Maensiri S. Jungsuttiwong T. Sudyoadsuk V. Promarak |
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T. Keawin |
title |
Efficient bifunctional materials based on pyrene- and triphenylamine-functionalized dendrimers for electroluminescent devices |
title_short |
Efficient bifunctional materials based on pyrene- and triphenylamine-functionalized dendrimers for electroluminescent devices |
title_full |
Efficient bifunctional materials based on pyrene- and triphenylamine-functionalized dendrimers for electroluminescent devices |
title_fullStr |
Efficient bifunctional materials based on pyrene- and triphenylamine-functionalized dendrimers for electroluminescent devices |
title_full_unstemmed |
Efficient bifunctional materials based on pyrene- and triphenylamine-functionalized dendrimers for electroluminescent devices |
title_sort |
efficient bifunctional materials based on pyrene- and triphenylamine-functionalized dendrimers for electroluminescent devices |
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2018 |
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https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84940973375&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/54249 |
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