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Highly Robust Cu -TADF Emitters for Vacuum-Deposited OLEDs with Luminance up to 222 200 cd m and Device Lifetimes (LT ) up to 1300 hours at an Initial Luminance of 1000 cd m. | LitMetric

A critical step in advancing the practical application of copper-based organic light-emitting diodes (OLEDs) is to bridge the large gap between device efficiency and operational stability at practical luminance. Described is a panel of air- and thermally stable two-coordinate Cu emitters featuring bulky pyrazine- (PzIPr) or pyridine-fused N-heterocyclic carbene (PyIPr*) and carbazole (Cz) ligands with enhanced amide-Cu-carbene bonding interactions. These Cu emitters display thermally activated delayed fluorescence (TADF) from the LL'CT(Cz→PzIPr/PyIPr*) excited states across the blue to red regions with exceptional radiative rate constants of 1.1-2.2×10  s . Vapour-deposited OLEDs based on these Cu emitters showed excellent external quantum efficiencies and luminance up to 23.6 % and 222 200 cd m , respectively, alongside record device lifetimes (LT ) up to 1300 h at 1000 cd m under our laboratory conditions, highlighting the practicality of the Cu -TADF emitters.

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http://dx.doi.org/10.1002/anie.202203982DOI Listing

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