Ruan Wenke, Zhang Renrong, Zhong Qi, Fu Yan, Yang Zhiwei, Xie Mubiao
School of Chemistry and Chemical Engineering, Lingnan Normal University Zhanjiang 524048 China
RSC Adv. 2022 May 16;12(23):14819-14826. doi: 10.1039/d2ra02478k. eCollection 2022 May 12.
A series of phosphors BaPO:Eu ( = 0-0.1) were synthesized in a CO reduction atmosphere at a relatively low temperature (1113 K) by the solid-phase method. Crystallization and optical properties were investigated by using powder X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS) and fluorescence spectrophotometry (PL/PLE), respectively. Under the excitation of 394 nm, the emission spectrum of the phosphor presents a broad spectrum band of Eu and characteristic peaks of Eu in the range of 400-750 nm, indicating the coexistence of Eu and Eu in the system. The occupation of Eu and Eu in the BaPO matrix position was discussed by Gaussian fitting and PL spectra. The existence of energy transfer between Eu → Eu in the system can be found through PL spectra under excitation of 251 nm. The emission color of the phosphor can be adjusted by changing the Eu ion doping concentration, resulting in the CIE color coordinates changing from (0.213, 0.215) blue to (0.249, 0.261) light bluish white. The results show that BaPO:Eu phosphors can be used as a potential single-doped single-host white light-emitting material.
通过固相法在相对较低温度(1113 K)的CO还原气氛中合成了一系列BaPO:Eu(= 0 - 0.1)荧光粉。分别利用粉末X射线衍射(XRD)、X射线光电子能谱(XPS)和荧光分光光度法(PL/PLE)研究了其结晶和光学性质。在394 nm激发下,荧光粉的发射光谱呈现出Eu的宽光谱带以及400 - 750 nm范围内Eu的特征峰,表明体系中Eu和Eu共存。通过高斯拟合和PL光谱讨论了Eu和Eu在BaPO基质位置的占据情况。在251 nm激发下通过PL光谱可以发现体系中存在Eu→Eu的能量转移。通过改变Eu离子掺杂浓度可以调节荧光粉的发射颜色,导致CIE色坐标从(0.213, 0.215)蓝色变为(0.249, 0.261)浅蓝白色。结果表明,BaPO:Eu荧光粉可作为一种潜在的单掺杂单基质白光发射材料。