Ji Wenchao, Xu Xueke, Qiang Ming, Dun Aihuan
Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, No. 899 Huiwang East Road, Shanghai 201800, China.
Materials (Basel). 2024 Apr 1;17(7):1610. doi: 10.3390/ma17071610.
To address the issue of the lack of red light in traditional Ce: YAG-encapsulated blue LED white light systems, we utilized spark plasma sintering (SPS) to prepare spinel-based Cr-doped red phosphor ceramics. Through phase and spectral analysis, the SPS-sintered ZnAlO: 0.5%Cr phosphor ceramic exhibits good density, and Cr is incorporated into [AlO] octahedra as a red emitting center. We analyzed the reasons behind the narrow-band emission and millisecond-level lifetime of ZAO: 0.5%Cr, attributing it to the four-quadrupole interaction mechanism as determined through concentration quenching modeling. Additionally, we evaluated the thermal conductivity and thermal quenching performance of the ceramic. The weak electron-phonon coupling (EPC) effects and emission from antisite defects at 699 nm provide positive assistance in thermal quenching. At a high temperature of 150 °C, the thermal conductivity reaches up to 14 W·m·K, and the 687 nm PL intensity is maintained at around 70% of room temperature. Furthermore, the internal quantum efficiency (IQE) of ZAO: 0.5%Cr phosphor ceramic can reach 78%. When encapsulated with Ce: YAG for a 450 nm blue LED, it compensates for the lack of red light, adjusts the color temperature, and improves the color rendering index (R9). This provides valuable insights for the study of white light emitting diodes (WLEDs).
为了解决传统铈掺杂钇铝石榴石(Ce:YAG)封装的蓝光发光二极管(LED)白光系统中缺少红光的问题,我们利用放电等离子烧结(SPS)制备了基于尖晶石的掺铬红色荧光粉陶瓷。通过相分析和光谱分析,SPS烧结的ZnAlO:0.5%Cr荧光粉陶瓷具有良好的密度,并且Cr作为红色发射中心掺入到[AlO]八面体中。我们分析了ZAO:0.5%Cr窄带发射和毫秒级寿命的原因,通过浓度猝灭建模确定这归因于四极相互作用机制。此外,我们评估了该陶瓷的热导率和热猝灭性能。699nm处较弱的电子-声子耦合(EPC)效应和反位缺陷的发射对热猝灭有积极的帮助。在150℃的高温下,热导率高达14W·m·K,687nm处的光致发光(PL)强度保持在室温下的70%左右。此外,ZAO:0.5%Cr荧光粉陶瓷的内量子效率(IQE)可达78%。当与Ce:YAG一起封装用于450nm蓝光LED时,它弥补了红光的不足,调节了色温,并提高了显色指数(R9)。这为白光发光二极管(WLED)的研究提供了有价值的见解。