Recent Advances in Solution-Processable Dendrimers for Highly Efficient Phosphorescent Organic Light-Emitting Diodes (PHOLEDs)

Phosphorescent dendrimers together with dendritic host materials have inherent advantages in achieving highly efficient phosphorescent organic light‐emitting diodes (PHOLEDs) with low‐cost, solution‐processed device fabrication. Recently, much research effort has been devoted to developing these den...

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Veröffentlicht in:Asian journal of organic chemistry 2015-05, Vol.4 (5), p.394-429
Hauptverfasser: Xu, Xianbin, Yang, Xiaolong, Zhao, Jiang, Zhou, Guijiang, Wong, Wai-Yeung
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Sprache:eng
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Zusammenfassung:Phosphorescent dendrimers together with dendritic host materials have inherent advantages in achieving highly efficient phosphorescent organic light‐emitting diodes (PHOLEDs) with low‐cost, solution‐processed device fabrication. Recently, much research effort has been devoted to developing these dendritic materials in the field of electroluminescence (EL). In this Focus Review, the major advances in this line of research are summarized and discussed. The crucial roles played by these dendritic organic electronic materials in coping with the key issues in the field of PHOLEDs have been specially emphasized. These include alleviating the triplet‐triplet annihilation effect through the site‐isolation effect associated with the dendritic structures, promoting charge‐carrier injection/transporting ability and ambipolar properties through functionalized dendrons, fulfilling simple PHOLEDs with high EL efficiencies, obtaining self‐hosting phosphorescent emitters, and avoiding undesired energy transfer process from phosphorescent cores to the dendrons. In addition, the future perspectives and ongoing challenges of this research frontier are also highlighted. Seeing the light: This Focus Review covers the advantages that phosphorescent dendrimers and dendritic host materials offer in achieving highly efficient phosphorescent organic light‐emitting diodes through relieving triplet‐triplet annihilation, promoting charge carrier injection/transporting ability and ambipolar properties, constructing simple, highly efficient devices, obtaining self‐hosting phosphorescent emitters, and avoiding undesired energy transfer.
ISSN:2193-5807
2193-5815
DOI:10.1002/ajoc.201402266