School of Physics Science and Technology, Lingnan Normal University, Zhanjiang 524048, P. R. China.
Chem Commun (Camb). 2019 Mar 19;55(24):3501-3504. doi: 10.1039/c9cc00230h.
The development of blue quantum dot light-emitting diodes (QLEDs) lags far behind that of the red and green ones, which hinders the practical commercialization of QLEDs. Balancing the charge transfer still remains a challenging task, because blue QD emitters have a deeper valence band (VB) that creates a great injection barrier impeding the hole transfer. Herein, we demonstrate that the charge transfer balance can be improved by using a tert-butyldimethylsilyl chloride-modified poly(p-phenylene benzobisoxazole) (TBS-PBO) blocking layer. The TBS-PBO acts well in blocking excess electron injection and preserving the emission efficiency of the QD emitter. Compared to the insulating blocking layers, TBS-PBO has good conductivity, thus keeping the current density at a high level. Our device delivers a notable luminance of 4635 cd m-2 at an external quantum efficiency (EQE) maximum of 17.4%. To the best of our knowledge, the luminance with EQE > 17% is the highest one to be reported for blue QLEDs.
蓝色量子点发光二极管(QLED)的发展远远落后于红色和绿色 QLED,这阻碍了 QLED 的实际商业化。平衡电荷转移仍然是一项具有挑战性的任务,因为蓝色 QD 发射器具有更深的价带(VB),这会产生很大的注入势垒,阻碍空穴转移。在此,我们证明通过使用叔丁基二甲基氯修饰的聚(对亚苯基苯并二恶唑)(TBS-PBO)阻挡层可以改善电荷转移平衡。TBS-PBO 可以很好地阻止过量电子注入并保持 QD 发射器的发射效率。与绝缘阻挡层相比,TBS-PBO 具有良好的导电性,从而使电流密度保持在较高水平。我们的器件在外部量子效率(EQE)最大值为 17.4%时提供了显著的 4635 cd/m2 的亮度。据我们所知,对于蓝色 QLED,亮度超过 EQE>17%是报道的最高亮度。