2019
DOI: 10.3390/polym11111751
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Novel Dicyano-Phenylenevinylene Fluorophores for Low-Doped Layers: A Highly Emissive Material for Red OLEDs

Abstract: Two efficient deep red (DR)-emitting organic dicyano-phenylenevinylene derivatives with terminal withdrawing or donor groups were synthesized. The spectroscopic properties of the neat solids and the low-doped layers in polystyrene or polyvinylcarbazole host matrixes were analyzed, and the luminescence performance was explained using density functional theory (DFT) analysis. A noteworthy 89% fluorescence quantum yield was observed for the brightest red-emissive polyvinylcarbazole (PVK) blend. This result pushed… Show more

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Cited by 4 publications
(6 citation statements)
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“…Different dye percentages were tested in order to get better PL performance. As expected on the base of our previous study [48][49][50][51], the best emission for both samples was recorded on the more diluted blends (10 wt%), where the ACQ effect is attenuated.…”
Section: Pl Properties Of Ps Pvk and Pfo Blendssupporting
confidence: 88%
“…Different dye percentages were tested in order to get better PL performance. As expected on the base of our previous study [48][49][50][51], the best emission for both samples was recorded on the more diluted blends (10 wt%), where the ACQ effect is attenuated.…”
Section: Pl Properties Of Ps Pvk and Pfo Blendssupporting
confidence: 88%
“…In turn, ethyl-ester group twisted of~28 • with respect to the main plane. This pattern was already observed in BDF molecules [45]. The strictly hindered rotations satisfy the requirements of RIR molecules.…”
Section: Single-crystal X-ray Structuresupporting
confidence: 74%
“…To further explore the potential applications of NBDF probe in the production of emissive layers, the fluorophore was mixed with poly(vinylcarbazole) (PVK), a polymeric conductive matrix often employed in optoelectronic devices. Production of polymeric blends, and more generally deposition of low-weight molecules on conductive substrates [45,57,74], is a functional approach to produce macroscopically processable layers. For ACQ undergoing molecules this is a way to relieve fluorescence quenching effect [45,57].…”
Section: Production Of a Red Emissive Polymeric Layermentioning
confidence: 99%
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