Department of Chemistry, National Institute of Technology, Rourkela, India.
Luminescence. 2021 May;36(3):576-587. doi: 10.1002/bio.3975. Epub 2020 Dec 2.
A series of high-efficiency narrow band red-emitting La M O :Eu (M = Mo/W) phosphors for white LEDs was synthesized using a conventional solid-state reaction method. All the compositions show absorption in the near ultraviolet (UV) light region due to charge transfer from O to M (M = W and Mo). In order to investigate the luminescence quenching effect, the Eu concentration was varied in the La M O lattice. The tungstate analogue had a quantum yield of 46.5%, whereas the molybdate equivalent had a comparatively subordinate value (15.4%). The phosphor could be competently excited by ~395 or 465 nm photons (could be integrated well with a near-UV or blue LED chip) and showed dominant red emission electric-dipole transition ( D → F ) with sharp spectral lines due to 4f-4f electronic transition of the Eu ion and potential red-emitting colour converters for white LEDs. The red LED was fabricated by integrating the best phosphor composition with a near-UV LED and a white hybrid LED was fabricated by conjugating with a yellow organic dye and a red phosphor with near-UV LEDs. The white hybrid LED showed an excellent colour rendering index (83%), with CIE colour coordinates (0.313, 0.365) and CCT (6280 K).
采用传统的固态反应法合成了一系列用于白光 LED 的高效窄带红光发射 LaMO:Eu(M=Mo/W)荧光粉。所有组成部分由于 O 向 M(M=W 和 Mo)的电荷转移,在近紫外(UV)光区都有吸收。为了研究发光猝灭效应,在 LaMO 晶格中改变了 Eu 的浓度。钨酸盐类似物的量子产率为 46.5%,而钼酸盐当量的量子产率则相对较低(15.4%)。该荧光粉可以有效地被~395 或 465nm 的光子激发(可以与近 UV 或蓝色 LED 芯片很好地集成),并由于 Eu 离子的 4f-4f 电子跃迁而表现出主导的红色电偶极跃迁(D→F),具有尖锐的光谱线,是潜在的用于白光 LED 的红色发光色转换材料。通过将最佳荧光粉成分与近 UV LED 集成,制造了红色 LED,通过与近 UV LED 共轭的黄色有机染料和红色荧光粉,制造了白色混合 LED。白色混合 LED 的显色指数(83%)出色,CIE 色坐标为(0.313,0.365),CCT 为 6280K。