Efficient Vacuum-Processed Light-Emitting Diodes Based on Carbene–Metal–Amides

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Abstract

Efficient vacuum-processed organic light-emitting diodes are fabricated using a carbene–metal–amide material, CMA1. An electroluminescence (EL) external quantum efficiency of 23% is achieved in a host-free emissive layer comprising pure CMA1. Furthermore external quantum efficiencies of up to 26.9% are achieved in host–guest emissive layers. EL spectra are found to depend on both the emissive-layer doping concentration and the choice of host material, enabling tuning of emission color from mid-green (Commission Internationale de l'Éclairage co-ordinates [0.24, 0.46]) to sky blue ([0.22 0.35]) without changing dopant. This tuning is achieved without compromising luminescence efficiency (>80%) while maintaining a short radiative lifetime of triplets (<1 μs).

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Conaghan, P. J., Menke, S. M., Romanov, A. S., Jones, S. T. E., Pearson, A. J., Evans, E. W., … Credgington, D. (2018). Efficient Vacuum-Processed Light-Emitting Diodes Based on Carbene–Metal–Amides. Advanced Materials, 30(35). https://doi.org/10.1002/adma.201802285

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