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Journal ArticleDOI

Functional metallophosphors for effective charge carrier injection/transport: New robust OLED materials with emerging applications

Wai Yeung Wong, +1 more
- 23 Jun 2009 - 
- Vol. 19, Iss: 26, pp 4457-4482
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TLDR
In this article, the authors highlight recent and current advances in developing new synthetic strategies for multifunctional organometallic phosphors, which integrate both luminescent and charge carrier injection/transport functions into the same molecules so that they perform most, if not all, of the necessary functional roles (viz. photoexcitation, charge injection and transport as well as recombination).
Abstract
Organic light-emitting diodes (OLEDs) show great promise of revolutionizing display technologies in the scientific community. One successful approach for improved device efficiency has been to maximize the electron-hole recombination using dopants that emit from the triplet excited state. In this context, heavy transition metal complexes have recently gained tremendous academic and industrial research interest for fabricating highly efficient phosphorescent OLEDs by taking advantage of the 1:3 exciton singlet/triplet ratio predicted by simple spin statistics. Traditional room-temperature phosphorescent dyes are monofunctional materials working only as light-emitting centres but other key issues including charge generation and transport remain to be addressed in the electroluminescence. This Feature Article highlights recent and current advances in developing new synthetic strategies for multifunctional organometallic phosphors, which integrate both luminescent and charge carrier injection/transport functions into the same molecules so that they perform most, if not all, of the necessary functional roles (viz. photoexcitation, charge injection and transport as well as recombination) for achieving high-efficiency devices. Considerable focus is placed on the design concepts towards the tuning capability of charge-transport characteristics and phosphorescence emission colour of this prominent class of metallophosphors. In particular, the latest research endeavor in accomplishing novel triplet emitters with enhanced charge injection/charge transport of both hole and electron carriers is criticially discussed, which can provide good implications regarding their possible routes for future research development in the field.

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Journal ArticleDOI

Transition-metal phosphors with cyclometalating ligands: fundamentals and applications

TL;DR: Various types of cyclometalating chelates for which the favorable metal-chelate bonding interaction, on the one hand, makes the resulting phosphorescent complexes highly emissive in both fluid and solid states at room temperature, are reviewed.
Journal ArticleDOI

AIE macromolecules: syntheses, structures and functionalities

TL;DR: It is expected that the mechanistic insights into the AIE phenomena, based on the restriction of intramolecular motions and structure rigidification, can guide the future design of AIE materials with fascinating structures and functionalities.
Journal ArticleDOI

Activating efficient phosphorescence from purely organic materials by crystal design

TL;DR: Novel design principles to create purely organic materials demonstrating phosphorescence that can be turned on by incorporating halogen bonding into their crystals are described and a directed heavy atom design principle is demonstrated that will allow for the development of bright and practical purely organic phosphors.
Journal ArticleDOI

Phosphorescent chemosensors based on heavy-metal complexes

TL;DR: This critical review focuses on the design principles and the recent development of phosphorescent chemosensors for metal cations, anions, pH, oxygen, volatile organic compounds and biomolecules based on some heavy-metal complexes.
Journal ArticleDOI

Organic host materials for phosphorescent organic light-emitting diodes

TL;DR: This critical review focuses on small-molecular organic host materials as triplet guest emitters in PhOLEDs, using typical hole and electron transport materials used in OLEDs.
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