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The highest external quantum efficiency was observed to be 3.71% at 5 V.
OLEDs using M2 as emitting layer is observed to deliver a truly deep blue CIE of y < 0.06 with a highest external quantum efficiency of 3.02%.
As a result of the spin-coated OLEDs employing MPPA-MCBP as the host-free near-infrared emitter exhibits a highest external quantum efficiency (EQE) of 0.62% and a peak wavelength at 698 nm, which indicates the design of self-host TADF dendrimers containing bipolar dendrons will be a promising strategy to improve the electroluminescent performance of solution-processed nondoped device.
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Similarly, the Al@Cu2O heterostructure exhibits higher external quantum efficiencies (EQE) of CO formation (Fig. 2b).
Ly, K. T. et al. Near-infrared organic light-emitting diodes with very high external quantum efficiency and radiance.
A high external quantum efficiency of 3.11% is achieved in the TPyC-based devices.
PLED devices fabricated with the polymers showed reasonably high external quantum efficiencies.
Liu, X., Wang, H., Yang, T., Zhang, W. & Gong, X. Solution-processed ultrasensitive polymer photodetectors with high external quantum efficiency and detectivity.
Some devices exhibit a highly efficient blue electroluminescence with a high external quantum efficiency of more than 7%.
The devices test showed that DTPA-based dexhibitedhigherd highefficiencyncy and higher external quantum efficiency (EQE), which indicated DTPA possesses good hole-transporting ability.
Infrared photons (>700 nm) contribute about 30% of the photocurrent and yield a high external quantum efficiency (EQE) of 20% at 1050 nm.
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