MIIT Key Laboratory of Advanced Display Materials and Devices, Institute of Optoelectronics & Nanomaterials, School of Materials Science and Engineering, Nanjing University of Science and Technology, Nanjing, 210094, China.
Adv Mater. 2018 Jul;30(30):e1800764. doi: 10.1002/adma.201800764. Epub 2018 Jun 10.
Developing low-cost and high-quality quantum dots (QDs) or nanocrystals (NCs) and their corresponding efficient light-emitting diodes (LEDs) is crucial for the next-generation ultra-high-definition flexible displays. Here, there is a report on a room-temperature triple-ligand surface engineering strategy to play the synergistic role of short ligands of tetraoctylammonium bromide (TOAB), didodecyldimethylammonium bromide (DDAB), and octanoic acid (OTAc) toward "ideal" perovskite QDs with a high photoluminescence quantum yield (PLQY) of >90%, unity radiative decay in its intrinsic channel, stable ink characteristics, and effective charge injection and transportation in QD films, resulting in the highly efficient QD-based LEDs (QLEDs). Furthermore, the QD films with less nonradiative recombination centers exhibit improved PL properties with a PLQY of 61% through dopant engineering in A-site. The robustness of such properties is demonstrated by the fabrication of green electroluminescent LEDs based on CsPbBr QDs with the peak external quantum efficiency (EQE) of 11.6%, and the corresponding peak internal quantum efficiency (IQE) and power efficiency are 52.2% and 44.65 lm W , respectively, which are the most-efficient perovskite QLEDs with colloidal CsPbBr QDs as emitters up to now. These results demonstrate that the as-obtained QD inks have a wide range application in future high-definition QD displays and high-quality lightings.
发展低成本、高质量的量子点(QD)或纳米晶体(NC)及其相应的高效发光二极管(LED)对于下一代超高清晰度柔性显示器至关重要。在这里,我们报告了一种室温三配体表面工程策略,该策略发挥了四辛基溴化铵(TOAB)、双十二烷基二甲基溴化铵(DDAB)和辛酸(OTAc)等短配体的协同作用,得到了具有高光致发光量子产率(PLQY)>90%、固有通道中辐射衰减率为 1、稳定的墨水特性以及 QD 薄膜中有效电荷注入和传输的“理想”钙钛矿 QD。这使得高效的基于 QD 的 LED(QLED)得以实现。此外,通过 A 位掺杂工程,QD 薄膜中具有较少非辐射复合中心,其 PLQY 提高到 61%,从而改善了 PL 性能。这些特性的稳健性通过基于 CsPbBr QD 的绿色电致发光 LED 的制造得到了证明,其峰值外量子效率(EQE)为 11.6%,相应的峰值内量子效率(IQE)和功率效率分别为 52.2%和 44.65 lm W -1 ,这是迄今为止使用胶体 CsPbBr QD 作为发射器的最有效的钙钛矿 QLED。这些结果表明,所获得的 QD 油墨在未来的高清晰度 QD 显示器和高质量照明中有广泛的应用。