Stable and efficient pure blue quantum-dot LEDs enabled by inserting an anti-oxidation layer.
Wenjing ZhangBo LiChun ChangFei ChenQin ZhangQingli LinLei WangJinhang YanFangfang WangYihua ChongZuliang DuFeng-Jia FanHuaibin ShenPublished in: Nature communications (2024)
The efficiency and stability of red and green quantum-dot light-emitting diodes have already met the requirements for commercialization in displays. However, the poor stability of the blue ones, particularly pure blue color, is hindering the commercialization of full-color quantum-dot light-emitting diode technology. Severe hole accumulation at the blue quantum-dot/hole-transport layer interface makes the hole-transport layer prone to oxidation, limiting the device operational lifetime. Here, we propose inserting an anti-oxidation layer (poly(p-phenylene benzobisoxazole)) between this interface to take in some holes from the hole-transport layer, which mitigates the oxidation-induced device degradation, enabling a T 50 (time for the luminance decreasing by 50%) of more than 41,000 h with an initial brightness of 100 cd m -2 in pure blue devices. Meanwhile, the inserted transition layer facilitates hole injection and helps reduce electron leakage, leading to a peak external quantum efficiency of 23%.