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Meanwhile, the maximum current efficiency (C E) and power efficiency (P E) of the organic light-emitting devices (OLEDs) with the emitting layer of lower doping concentration were 13.5 cd/A and 14.1 lm/W, respectively.
As a result, we are able to realize efficient and stable PeLEDs, with a maximum current efficiency of 32.0 cd A−1 and a peak EQE of 10.5%, which increases to even higher EQE of 17% for TFA-derived mixed-cation FA0.11MA0.10Cs0.79PbBr3 LEDs.
The maximum current efficiency of the FOLED is 13 cd/A with stable mechanical flexibility even when bent to a radius of curvature of 2 mm.
However, the PTHPI-based OLED device exhibited a maximum current efficiency of 7.20 cd A−1, maximum power efficiency of 4.00 lm W−1, and external quantum efficiency of 3.41%, which are better than the corresponding values for the PTHBI-based device (luminous efficiency = 3.44 cd A−1 and external quantum efficiency = 2.38%).
Solution-processed phosphorescent organic light-emitting device (PhOLED) based on bipolar phosphor 2 as neat emitter achieves a maximum current efficiency of 12.4 cd A−1 with Commission Internationale de l'Eclairage coordinates of (0.57, 0.42), and the value remains at 11.5 cd A−1 at a practical luminance of 1000 cd m−2.
The maximum current efficiency of 6.2 cd/A is achieved.
The maximum current efficiency of Fe VI) formation reached during galvanostatic batch electrolysis has attained 72%.
Maximum current efficiency was observed when the potential scan rate reaches to 5 V s−1.
The resulting orange homojunction device exhibits a maximum current efficiency of 30.0 cd/A and low efficiency roll-off.
The device with the configuration of ITO/4FDT/Alq3/LiF/Al yields maximum current efficiency of 4.3 cd/A.
The maximum current efficiency and power efficiency of TWOLED reach 28.9 cd/A and 27.5 lm/W, respectively.
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highest current efficiency
maximum current amplitude
maximum current electrode
maximum photochemical efficiency
maximum current value
maximum current separation
maximum current density
maximum current velocity
maximum current stress
maximum current carrying
maximum current response
maximum current intensity
maximum thermal efficiency
maximum isentropic efficiency
maximum spectral efficiency
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