Khajuria Arti, Sharma Vishav Deep, Khajuria Pooja, Prakash Ram
School of Physics, Shri Mata Vaishno Devi University, Katra, J&K, 182320, India.
J Fluoresc. 2025 Jun 7. doi: 10.1007/s10895-025-04387-8.
KMgPOSm (x = 0.5-5 mol%) pyrophosphates were synthesized using a self-propagating solution combustion approach with the objective of generating luminous material for applications involving white light-emitting diodes. The structure formation of single-phase phosphor is validated, by the XRD and the presence of pyrophosphate (PO) group is validated, by the FTIR. The HRTEM and XPS validates the morphological and electronic studies of the synthesized nanophosphor, respectively. The optical bandgap is determined by plotting the Tauc's plot using diffuse reflectance spectrum. In PL spectroscopy, at [Formula: see text]= 402 nm the Sm doped KMgPO nanophosphor shows a sharp emission peak at 603 nm, which corresponds to the transition G → H of Sm ions. Furthermore, according to photometric investigations for optimum concentration, the color purity is 87%, the CCT is 1768 K, and the CIE coordinates are (x = 0.58, y = 0.42). The intact studies suggest that the phosphor is specially featured to emit in the amber region and have the potential to be used in the lamp industry, especially in solid-state lighting applications.
采用自蔓延溶液燃烧法合成了KMgPOSm(x = 0.5 - 5摩尔%)焦磷酸盐,目的是制备用于白光发光二极管应用的发光材料。通过XRD验证了单相荧光粉的结构形成,通过FTIR验证了焦磷酸盐(PO)基团的存在。HRTEM和XPS分别验证了合成的纳米荧光粉的形态和电子研究。通过使用漫反射光谱绘制Tauc图来确定光学带隙。在PL光谱中,在λ = 402 nm时,Sm掺杂的KMgPO纳米荧光粉在603 nm处显示出一个尖锐的发射峰,这对应于Sm离子的G→H跃迁。此外,根据最佳浓度的光度学研究,色纯度为87%,CCT为1768 K,CIE坐标为(x = 0.58,y = 0.42)。完整的研究表明,该荧光粉具有在琥珀色区域发光的特殊特性,有潜力用于灯具行业,特别是在固态照明应用中。