College of Materials and Environmental Engineering, Hangzhou Dianzi University, Hangzhou 310018, China.
Dalton Trans. 2018 May 8;47(18):6528-6537. doi: 10.1039/c8dt00992a.
Owing to its low-cost and satisfactory luminescent-emission performance in warm white light-emitting diodes (w-LEDs), the non-rare-earth Mn4+-activated red phosphor has become a promising competitor of commercial rare-earth doped phosphor. In this study, a series of novel red-light emitting phosphors based on Ca2YSbO6:Mn4+ have been developed successfully by a conventional solid-state reaction. The structural and luminescent properties of these phosphors are systematically investigated. The as-prepared Ca2YSbO6:Mn4+ product exhibits a broad excitation band ranging from 250 to 600 nm and an abnormal intense deep-red emission centered at 680 nm with a full width at half maximum (FWHM) of ∼46 nm. The optimal Mn4+ doping concentration is about 0.3 mol%, and the concentration quenching mechanism is determined to be a dipole-dipole interaction. Impressively, the Ca2YSbO6:0.003Mn4+ phosphor shows an outstanding quantum efficiency of 62.6% and an excellent thermal stability. In addition, the effect of Li+, Mg2+, Na+ and K+ dopants on the luminescent properties of Mn4+-doped Ca2YSbO6 phosphors is elucidated. Furthermore, by employing the as-prepared Ca2YSbO6:Mn4+ as a red component, a warm w-LED with high color rendering index (Ra = 87.5) and low correlated color temperature (CCT = 3255 K) can be acquired. It is believed that the present phosphor has a potential application as a supplement of the red component for warm w-LEDs.
由于在暖白光发光二极管 (w-LED) 中具有低成本和令人满意的发光性能,Mn4+激活的红色荧光粉已成为商业稀土掺杂荧光粉的有前途的竞争对手。在这项研究中,通过常规的固态反应成功开发了一系列基于 Ca2YSbO6:Mn4+的新型红色发光荧光粉。系统研究了这些荧光粉的结构和发光性能。所制备的 Ca2YSbO6:Mn4+产物表现出从 250 到 600nm 的宽激发带和以 680nm 为中心的异常强的深红光发射,半最大值全宽(FWHM)约为 46nm。最佳 Mn4+掺杂浓度约为 0.3mol%,浓度猝灭机制确定为偶极-偶极相互作用。令人印象深刻的是,Ca2YSbO6:0.003Mn4+荧光粉表现出 62.6%的出色量子效率和优异的热稳定性。此外,还阐明了 Li+、Mg2+、Na+和 K+掺杂剂对 Mn4+-掺杂 Ca2YSbO6 荧光粉发光性能的影响。此外,通过使用所制备的 Ca2YSbO6:Mn4+作为红色成分,可以获得具有高显色指数 (Ra=87.5) 和低相关色温 (CCT=3255K) 的暖白光 w-LED。相信本荧光粉具有作为暖白光 w-LED 的红色成分的补充的潜在应用。