2017Molecular Crystals and Liquid CrystalsRequires access

Efficient blue and white phosphorescent organic light-emitting diodes with a mixed host in emission layer

Wei Xiang, Haojian Yu, Jin Cao, Chul-Gyu Jhun, Chao Ping Chen

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Abstract

Efficient blue and white phosphorescent organic light-emitting diodes (PhOLEDs) with low turn-on voltage were fabricated by using mixed hole and electron transporting layer materials as the co-host in the emissive layer. The optimized performance of blue PhOLEDs was achieved with the current efficiency, external quantum efficiency and power efficiency are 45.11 cd/A, 19.21% and 45.67 lm/W, respectively. Based on the blue-PhOLEDs, efficient white PhOLEDs were achieved with ultrathin green and red emitters were respectively inserted into different locations of the emitting layer. The influences of the locations on the emissive spectra of white PHOLED were investigated. The optimized white PHOLED with the maximum power efficiency of 45.22 lm/W and the peak external quantum efficiency of 16.39% were achieved.

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What this paper is about

Efficient blue and white phosphorescent organic light-emitting diodes (PhOLEDs) with low turn-on voltage were fabricated by using mixed hole and electron transporting layer materials as the co-host in the emissive layer. The optimized performance of blue PhOLEDs was achieved with the current efficiency, external quantum efficiency and power efficiency are 45.11 cd/A, 19.21% and 45.67 lm/W, respectively. Based on the blue-PhOLEDs, efficient white PhOLEDs were achieved with ultrathin green and red emitters were respectively inserted into different locations of the emitting layer. The influences of the locations on the emissive spectra of white PHOLED were investigated. The optimized white PHOLED with the maximum power efficiency of 45.22 lm/W and the peak external quantum efficiency of 16.39% were achieved.

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Available abstract

Efficient blue and white phosphorescent organic light-emitting diodes (PhOLEDs) with low turn-on voltage were fabricated by using mixed hole and electron transporting layer materials as the co-host in the emissive layer. The optimized performance of blue PhOLEDs was achieved with the current efficiency, external quantum efficiency and power efficiency are 45.11 cd/A, 19.21% and 45.67 lm/W, respectively. Based on the blue-PhOLEDs, efficient white PhOLEDs were achieved with ultrathin green and red emitters were respectively inserted into different locations of the emitting layer. The influences of the locations on the emissive spectra of white PHOLED were investigated. The optimized white PHOLED with the maximum power efficiency of 45.22 lm/W and the peak external quantum efficiency of 16.39% were achieved.

Key concepts: Phosphorescent organic light-emitting diode, Phosphorescence, Quantum efficiency, Optoelectronics, Materials science, OLED, Diode, Layer (electronics)

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