Materials Science and Technology Division, CSIR-National Institute for Interdisciplinary Science and Technology (NIIST), Trivandrum, India.
Luminescence. 2021 May;36(3):819-825. doi: 10.1002/bio.4007. Epub 2021 Jan 20.
Commercially used inorganic phosphors heavily depend on lanthanide doped host materials which are becoming more expensive and also their availability is limited due to scarcity. In this regard, a new lanthanide-free self-activated full-color emission phosphor in Y doped Sr Bi(VO ) system was developed by the conventional ceramic route. These phosphors crystallize into a hexagonal-type palmierite mineral structure. They exhibit broad excitation bands in the wavelength region of 250-400 nm, owing to the charge transfer transitions from both O and Bi6s electrons to V . Upon excitation, these phosphors show bright broad emissions in the 400-750 nm wavelength range, peaking around 535 nm, with a large full width half maximum of 160 nm. The Y substitution allows tuning of the emission from yellowish green to bluish white due to increased distortion of [VO ] tetrahedron. Consequently, the CIE color coordinates changed from (0.42, 0.50) to (0.31, 0.35) which lies in the near-white region in the chromaticity diagram. Thus, the newly developed Y doped Sr Bi(VO ) is a promising lanthanide-free full-color emission phosphor for applications in pc-white light emitting diodes.
商用无机荧光粉严重依赖镧系掺杂的基质材料,这些材料的价格越来越高,而且由于稀缺,其可用性也有限。在这方面,通过传统的陶瓷路线,开发了一种新的无镧自激活全彩色发射荧光粉 Y 掺杂 Sr Bi(VO ) 体系。这些荧光粉结晶为六方型棕榈矿结构。它们在 250-400nm 的波长范围内表现出宽的激发带,这是由于 O 和 Bi6s 电子到 V 的电荷转移跃迁。在激发下,这些荧光粉在 400-750nm 的波长范围内显示出明亮的宽带发射,峰值约为 535nm,半最大值全宽为 160nm。由于 [VO ]四面体的变形增加,Y 的取代允许发射从黄绿光到蓝白光的调谐。因此,CIE 颜色坐标从(0.42,0.50)变为(0.31,0.35),这在色度图中位于近白色区域。因此,新开发的 Y 掺杂 Sr Bi(VO ) 是一种很有前途的无镧全彩色发射荧光粉,可用于 pc-白光发光二极管。