College of Materials and Environmental Engineering , Hangzhou Dianzi University , Hangzhou 310018 , China.
College of Physics and Energy , Fujian Normal University , Fuzhou , 350117 , P. R. China.
Inorg Chem. 2018 Aug 6;57(15):8978-8987. doi: 10.1021/acs.inorgchem.8b00947. Epub 2018 Jul 23.
Non-rare-earth Mn-doped double-perovskite (BaSr )YSbO:Mn red-emitting phosphors with adjustable photoluminescence are fabricated via traditional high-temperature sintering reaction. The structural evolution, variation of Mn local environment, luminescent properties, and thermal quenching are studied systematically. With elevation of Sr substituting content, the major diffraction peak moves up to a higher angle gradually. Impressively, with increasing the substitution of Ba with Sr cation from 0 to 100%, the emission band shifts to short-wavelength in a systematic way resulting from the higher transition energy from excited states to ground states. Besides, this blue-shift appearance can be illuminated adequately using the crystal field strength. The thermal quenching of the obtained solid solution is dramatically affected by the composition, with the PL intensity increasing 16% at 423 K going from x = 0 to 1.0. The w-LEDs component constructed by coupling the UV-LED chip with red/green/blue phosphors demonstrate an excellent correlated color temperature (CCT) of 3404 K, as well as color rendering index (CRI) of 86.8.
通过传统的高温烧结反应,制备了可调节光致发光的非稀土 Mn 掺杂双钙钛矿(BaSr )YSbO:Mn 红色发光荧光粉。系统研究了结构演变、Mn 局部环境的变化、发光性能和热猝灭。随着 Sr 取代含量的升高,主要衍射峰逐渐向更高角度移动。令人印象深刻的是,随着 Ba 被 Sr 阳离子取代的比例从 0 增加到 100%,发射带由于从激发态到基态的更高跃迁能量而系统地向短波长移动。此外,这种蓝移现象可以用晶体场强度充分说明。所得固溶体的热猝灭受组成的显著影响,PL 强度在 423 K 时从 x = 0 增加到 1.0 时增加了 16%。由紫外 LED 芯片与红绿蓝荧光粉耦合而成的 w-LED 组件表现出 3404 K 的优异相关色温(CCT)和 86.8 的显色指数(CRI)。