International audienceLight-emitting Electrochemical Cells (LECs) constitute one of the most recent generations of Organic Light-Emitting Diodes (OLEDs). The main difference between LECs and OLEDs is that LECs include mobile ions in the active layer. Ionic transition-metal complexes and especially ionic iridium (III) complexes have recently attracted widespread attention as potential electroluminescent materials for LECs. Herein, we present an overview of LECs incorporating ionic iridium (III) complexes as phosphorescent emitters. Synthetic strategies developed to introduce iridium (III) complexes in the active layer are also reviewed. Despite the numerous intrinsic drawbacks still remaining, recent advances make iridium-based LECs promisin...
In light-emitting electrochemical cells, the lifetime of the device is intrinsically linked to the s...
We report on five cationic iridium(III) complexes with cyclometalating 2-(3'-trifluoromethylphenyl)p...
The exploration of efficient yellow emitters featuring broad emission band plays an essential role f...
International audienceLight-emitting Electrochemical Cells (LECs) constitute one of the most recent ...
The recent developments in using iridium(III) complexes as phosphorescent emitters in electrolumines...
The advantage of using phosphorescent transition metal-ligand complexes in optoelectronic applicatio...
This chapter gives an overview of the development of cyclometallated iridium(III) complexes for appl...
Over the past two decades dramatic advances have been achieved in the field of organic electrolumine...
Cationic iridium(III) complexes represent the single largest class of emitters used in light emittin...
International audienceThe optical and electronic properties of a solution-processed light-emitting e...
International audiencePhosphorescent Organic Light-Emitting Diodes (PhOLEDs) based on iridium (III) ...
The preparation and characterization of a series of iridium(III) ionic transition-metal complexes fo...
In light-emitting electrochemical cells, the lifetime of the device is intrinsically linked to the s...
We report on five cationic iridium(III) complexes with cyclometalating 2-(3'-trifluoromethylphenyl)p...
The exploration of efficient yellow emitters featuring broad emission band plays an essential role f...
International audienceLight-emitting Electrochemical Cells (LECs) constitute one of the most recent ...
The recent developments in using iridium(III) complexes as phosphorescent emitters in electrolumines...
The advantage of using phosphorescent transition metal-ligand complexes in optoelectronic applicatio...
This chapter gives an overview of the development of cyclometallated iridium(III) complexes for appl...
Over the past two decades dramatic advances have been achieved in the field of organic electrolumine...
Cationic iridium(III) complexes represent the single largest class of emitters used in light emittin...
International audienceThe optical and electronic properties of a solution-processed light-emitting e...
International audiencePhosphorescent Organic Light-Emitting Diodes (PhOLEDs) based on iridium (III) ...
The preparation and characterization of a series of iridium(III) ionic transition-metal complexes fo...
In light-emitting electrochemical cells, the lifetime of the device is intrinsically linked to the s...
We report on five cationic iridium(III) complexes with cyclometalating 2-(3'-trifluoromethylphenyl)p...
The exploration of efficient yellow emitters featuring broad emission band plays an essential role f...