Fujian Key Laboratory of Surface and Interface Engineering for High Performance Materials, College of Materials, Xiamen University, Xiamen 361005, P. R. China.
Shenzhen Research Institute of Xiamen University, Shenzhen 518000, P. R. China.
ACS Appl Mater Interfaces. 2023 Jun 21;15(24):29297-29307. doi: 10.1021/acsami.3c04337. Epub 2023 Jun 9.
Lead halide perovskite nanocrystals (NCs) have been the star material in lighting and displays owing to their excellent photoelectrical properties, but they have not simultaneously realized high photoluminescence quantum yield (PLQY) and high stability. To solve this problem, we propose a perovskite/linear low-density polyethylene (perovskite/LLDPE) core/shell NC by the synergistic role of the pressure effect and steric effect. Green CsPbBr/LLDPE core/shell NCs with near-unity PLQY and nonblinking behavior were synthesized through an in situ hot-injection process. The mechanism of the improved photoluminescence (PL) properties is the enhanced pressure effect resulting in increased radiative recombination and interaction between the ligand and perovskite crystals, as confirmed by the PL spectra and finite element calculations. Meanwhile, the NCs show high stability under ambient conditions (with a PLQY of 92.5% after 166 days) and against 365 nm UV light (maintaining 61.74% of the initial PL intensity after continuous radiation for 1000 min). This strategy also works well in the blue and red perovskite/LLDPE NCs and red InP/ZnSeS/ZnS/LLDPE NCs. Finally, white-emitting Mini-LEDs were fabricated by combining the green CsPbBr/LLDPE and red CsPbBrI/LLDPE core/shell NCs with blue Mini-LED chips. The white-emitting Mini-LEDs exhibit super wide color gamut (∼129% of the National Television Standards Committee or 97% of the Rec. 2020 standards).
卤铅钙钛矿纳米晶体(NCs)因其优异的光电性能而成为照明和显示领域的明星材料,但它们尚未同时实现高光致发光量子产率(PLQY)和高稳定性。为了解决这个问题,我们提出了一种通过压力效应和位阻效应协同作用的钙钛矿/线性低密度聚乙烯(perovskite/LLDPE)核/壳 NC。通过原位热注入法合成了具有近全 PLQY 和无闪烁行为的绿色 CsPbBr/LLDPE 核/壳 NC。改善光致发光(PL)性能的机制是增强的压力效应导致辐射复合和配体与钙钛矿晶体之间的相互作用增强,这通过 PL 光谱和有限元计算得到证实。同时,NC 在环境条件下表现出高稳定性(在 166 天后 PLQY 为 92.5%),并且对 365nmUV 光具有高稳定性(在连续辐射 1000 分钟后仍保持初始 PL 强度的 61.74%)。该策略在蓝色和红色钙钛矿/LLDPE NC 和红色 InP/ZnSeS/ZnS/LLDPE NC 中也效果良好。最后,通过将绿色 CsPbBr/LLDPE 和红色 CsPbBrI/LLDPE 核/壳 NC 与蓝色 Mini-LED 芯片结合,制备了白色发射 Mini-LED。白色发射 Mini-LED 表现出超宽色域(∼NTSC 标准的 129%或 Rec.2020 标准的 97%)。