Ji Haipeng, Huang Zhaohui, Xia Zhiguo, Molokeev Maxim S, Jiang Xingxing, Lin Zheshuai, Atuchin Victor V
School of Materials Science and Technology, National Laboratory of Mineral Materials, Beijing Key Laboratory of Materials Utilization of Nonmetallic Minerals and Solid Wastes, China University of Geosciences (Beijing), Beijing, 100083, China.
Dalton Trans. 2015 Apr 28;44(16):7679-86. doi: 10.1039/c4dt03887h.
In this study, the Ba3Eu(PO4)3 and Sr3Eu(PO4)3 compounds were synthesized and the crystal structures were determined for the first time by Rietveld refinement using powder X-ray diffraction (XRD) patterns. Ba3Eu(PO4)3 crystallizes in cubic space group I43d, with cell parameters of a = 10.47996(9) Å, V = 1151.01(3) Å(3) and Z = 4; Ba(2+) and Eu(3+) occupy the same site with partial occupancies of 3/4 and 1/4, respectively. Besides, in this structure, there exists two distorted kinds of the PO4 polyhedra orientation. Sr3Eu(PO4)3 is isostructural to Ba3Eu(PO4)3 and has much smaller cell parameters of a = 10.1203(2) Å, V = 1036.52(5) Å(3). The bandgaps of Ba3Eu(PO4)3 and Sr3Eu(PO4)3 are determined to be 4.091 eV and 3.987 eV, respectively, based on the UV-Vis diffuse reflectance spectra. The photoluminescence measurements reveal that, upon 396 nm n-UV light excitation, Ba3Eu(PO4)3 and Sr3Eu(PO4)3 exhibit orange-red emission with two main peaks at 596 nm and prevailing 613 nm, corresponding to the (5)D0 → (7)F1 and (5)D0 → (7)F2 transitions of Eu(3+), respectively. The dynamic disordering in the crystal structures contributes to the broadening of the luminescence spectra. The electronic structure of the phosphates was calculated by the first-principles method. The analysis elucidats that the band structures are mainly governed by the orbits of phosphorus, oxygen and europium, and the sharp peaks of the europium f-orbit occur at the top of the valence bands.
在本研究中,合成了Ba3Eu(PO4)3和Sr3Eu(PO4)3化合物,并首次通过使用粉末X射线衍射(XRD)图谱的Rietveld精修确定了晶体结构。Ba3Eu(PO4)3结晶于立方空间群I43d,晶胞参数为a = 10.47996(9) Å,V = 1151.01(3) Å(3)且Z = 4;Ba(2+)和Eu(3+)占据相同位置,占有率分别为3/4和1/4。此外,在该结构中,存在两种扭曲的PO4多面体取向。Sr3Eu(PO4)3与Ba3Eu(PO4)3同构,且晶胞参数小得多,a = 10.1203(2) Å,V = 1036.52(5) Å(3)。基于紫外可见漫反射光谱,确定Ba3Eu(PO4)3和Sr3Eu(PO4)3的带隙分别为4.091 eV和3.987 eV。光致发光测量表明,在396 nm近紫外光激发下,Ba3Eu(PO4)3和Sr3Eu(PO4)3呈现橙红色发射,在596 nm和占主导的613 nm处有两个主峰,分别对应于Eu(3+)的(5)D0 → (7)F1和(5)D0 → (7)F2跃迁。晶体结构中的动态无序导致发光光谱变宽。通过第一性原理方法计算了磷酸盐的电子结构。分析表明,能带结构主要由磷、氧和铕的轨道决定,铕f轨道的尖锐峰出现在价带顶部。