Bi Chenghao, Yao Zhiwei, Sun Xuejiao, Wei Xuecheng, Wang Junxi, Tian Jianjun
Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing, 100083, China.
Institute of Semiconductors, Chinese Academy of Sciences, Beijing, 100083, China.
Adv Mater. 2021 Apr;33(15):e2006722. doi: 10.1002/adma.202006722. Epub 2021 Feb 25.
The research on metal halide perovskite light-emitting diodes (PeLEDs) with green and infrared emission has demonstrated significant progress in achieving higher functional performance. However, the realization of stable pure-blue (≈470 nm wavelength) PeLEDs with increased brightness and efficiency still constitutes a considerable challenge. Here, a novel acid etching-driven ligand exchange strategy is devised for achieving pure-blue emitting small-sized (≈4 nm) CsPbBr perovskite quantum dots (QDs) with ultralow trap density and excellent stability. The acid, hydrogen bromide (HBr), is employed to etch imperfect [PbBr ] octahedrons, thereby removing surface defects and excessive carboxylate ligands. Subsequently, didodecylamine and phenethylamine are successively introduced to bond the residual uncoordinated sites of the QDs and attain in situ exchange with the original long-chain organic ligands, resulting in near-unity quantum yield (97%) and remarkable stability. The QD-based PeLEDs exhibit pure-blue electroluminescence at 470 nm (corresponding to the Commission Internationale del'Eclairage (CIE) (0.13, 0.11) coordinates), an external quantum efficiency of 4.7%, and a remarkable luminance of 3850 cd m , which is the highest brightness reported so far for pure-blue PeLEDs. Furthermore, the PeLEDs exhibit robust durability, with a half-lifetime exceeding 12 h under continuous operation, representing a record performance value for blue PeLEDs.
对具有绿色和红外发射的金属卤化物钙钛矿发光二极管(PeLEDs)的研究在实现更高功能性能方面已取得显著进展。然而,实现具有更高亮度和效率的稳定纯蓝色(≈470 nm波长)PeLEDs仍然是一个相当大的挑战。在此,设计了一种新颖的酸蚀刻驱动配体交换策略,以实现具有超低陷阱密度和优异稳定性的纯蓝色发光小尺寸(≈4 nm)CsPbBr钙钛矿量子点(QDs)。使用氢溴酸(HBr)蚀刻不完美的[PbBr]八面体,从而去除表面缺陷和过量的羧酸酯配体。随后,依次引入十二烷基胺和苯乙胺以键合量子点的残留未配位位点,并与原始长链有机配体进行原位交换,从而实现接近单位的量子产率(97%)和卓越的稳定性。基于量子点的PeLEDs在470 nm处呈现纯蓝色电致发光(对应于国际照明委员会(CIE)(0.13, 0.11)坐标),外部量子效率为4.7%,显著亮度为3850 cd m,这是迄今为止报道的纯蓝色PeLEDs最高亮度。此外,PeLEDs表现出强大的耐久性,在连续运行下半衰期超过12小时,代表了蓝色PeLEDs的创纪录性能值。