Department of Materials Science and Engineering, Seoul National University, Seoul, Republic of Korea.
Research Institute of Advanced Materials, Seoul National University, Seoul, Republic of Korea.
Nature. 2022 Nov;611(7937):688-694. doi: 10.1038/s41586-022-05304-w. Epub 2022 Nov 9.
Metal halide perovskites are attracting a lot of attention as next-generation light-emitting materials owing to their excellent emission properties, with narrow band emission. However, perovskite light-emitting diodes (PeLEDs), irrespective of their material type (polycrystals or nanocrystals), have not realized high luminance, high efficiency and long lifetime simultaneously, as they are influenced by intrinsic limitations related to the trade-off of properties between charge transport and confinement in each type of perovskite material. Here, we report an ultra-bright, efficient and stable PeLED made of core/shell perovskite nanocrystals with a size of approximately 10 nm, obtained using a simple in situ reaction of benzylphosphonic acid (BPA) additive with three-dimensional (3D) polycrystalline perovskite films, without separate synthesis processes. During the reaction, large 3D crystals are split into nanocrystals and the BPA surrounds the nanocrystals, achieving strong carrier confinement. The BPA shell passivates the undercoordinated lead atoms by forming covalent bonds, and thereby greatly reduces the trap density while maintaining good charge-transport properties for the 3D perovskites. We demonstrate simultaneously efficient, bright and stable PeLEDs that have a maximum brightness of approximately 470,000 cd m, maximum external quantum efficiency of 28.9% (average = 25.2 ± 1.6% over 40 devices), maximum current efficiency of 151 cd A and half-lifetime of 520 h at 1,000 cd m (estimated half-lifetime >30,000 h at 100 cd m). Our work sheds light on the possibility that PeLEDs can be commercialized in the future display industry.
金属卤化物钙钛矿作为下一代发光材料引起了人们的广泛关注,因为它们具有出色的发光性能,能实现窄带发射。然而,无论其材料类型(多晶还是纳米晶)如何,钙钛矿发光二极管(PeLED)都没有同时实现高亮度、高效率和长寿命,因为它们受到与每种钙钛矿材料的电荷输运和限制之间的性能折衷有关的内在限制的影响。在这里,我们报告了一种由约 10nm 尺寸的核/壳钙钛矿纳米晶制成的超亮、高效和稳定的 PeLED,该纳米晶通过简单的原位反应,使用苯膦酸(BPA)添加剂与三维(3D)多晶钙钛矿薄膜反应得到,而无需单独的合成过程。在反应过程中,大的 3D 晶体分裂成纳米晶,BPA 包围纳米晶,实现了强载流子限制。BPA 壳通过形成共价键来钝化配位不足的铅原子,从而大大降低了陷阱密度,同时保持了 3D 钙钛矿的良好电荷输运性能。我们展示了同时具有高效率、高亮度和稳定性的 PeLED,其最大亮度约为 470,000cd/m,最大外量子效率为 28.9%(40 个器件的平均值为 25.2±1.6%),最大电流效率为 151cd/A,在 1,000cd/m 时半衰期为 520h(估计在 100cd/m 时半衰期>30,000h)。我们的工作表明,PeLED 有可能在未来的显示行业中商业化。