Jung Woon Ho, Kim Byong Jae, Choi Mahnmin, Lee Hyeonjun, Cho Hyunjin, Kwon Yong Woo, Choi Yeongho, Lee Hyo Geun, Yoon Jinha, Lee Keeyong, Oh Sang Ho, Cho Seong-Yong, Lee Doh C, Jeong Sohee, Lim Jaehoon
Department of Energy Science, Center for Artificial Atoms, Sungkyunkwan University (SKKU), Suwon, Gyeonggi-do, 16419, Republic of Korea.
Department of Chemical and Biomolecular Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, 34141, Republic of Korea.
Adv Mater. 2024 Nov;36(46):e2410441. doi: 10.1002/adma.202410441. Epub 2024 Sep 23.
Colloidal quantum dot (QD)-based light-emitting diodes (QD-LEDs) have reached the pinnacle of quantum efficiency and are now being actively developed for next-generation displays and brighter light sources. Previous research has suggested utilizing inorganic hole-transport layers (HTLs) to explore brighter and more stable QD-LEDs. However, the performance metrics of such QD-LEDs with inorganic HTLs generally lag behind those of organic-inorganic hybrid QD-LEDs employing organic HTLs. In this study, colloidal NiMgO nanocrystals (NCs) with spatially controlled Mg are introduced as HTLs for realizing efficient and stable all-inorganic QD-LEDs. During the co-condensation of Ni and Mg precursors to produce valence band-lowered NiMgO NCs, incorporating ≈2% Mg into the NiO lattice creates additional Ni vacancies (V) within and on the NCs, influencing the hole concentration and mobility of the NiMgO NC films. Passivating the V exposed on the surface with magnesium hydroxide allows for tuning the electrical properties of the NiMgO NCs relative to those of an electron transport layer, allowing for a balanced charge supply and suppressed negative charging of the QDs. Optimized all-inorganic QD-LEDs employing NiMgO NCs achieved a peak external quantum efficiency of 16.4%, peak luminance of 269 455 cd m⁻, and a half-life of 462 690 h at 100 nit.
基于胶体量子点(QD)的发光二极管(QD-LED)已达到量子效率的巅峰,目前正积极研发用于下一代显示器和更亮光源。先前的研究表明,利用无机空穴传输层(HTL)来探索更亮、更稳定的QD-LED。然而,此类具有无机HTL的QD-LED的性能指标通常落后于采用有机HTL的有机-无机混合QD-LED。在本研究中,引入具有空间可控Mg的胶体NiMgO纳米晶体(NC)作为HTL,以实现高效且稳定的全无机QD-LED。在Ni和Mg前驱体的共缩合过程中,为了制备价带降低的NiMgO NC,将约2%的Mg掺入NiO晶格中会在NC内部和表面产生额外的Ni空位(V),从而影响NiMgO NC薄膜的空穴浓度和迁移率。用氢氧化镁钝化表面暴露的V,可以调节NiMgO NC相对于电子传输层的电学性质,实现电荷的平衡供应并抑制QD的负电荷积累。采用NiMgO NC的优化全无机QD-LED在100尼特下实现了16.4%的峰值外量子效率、269455坎德拉每平方米的峰值亮度以及462690小时的半衰期。