College of Chemistry, Jilin University, Changchun, 130026, People's Republic of China.
Luminescence. 2013 Sep-Oct;28(5):679-84. doi: 10.1002/bio.2415. Epub 2012 Sep 17.
Sr(3) MgSi(2) O(8) :Ce(3+) , Dy(3+) phosphors were prepared by a solid-state reaction technique and the photoluminescence properties were investigated. The emission spectra show not only a band due to Ce(3+) ions (403 nm) but also as a band due to Dy(3+) ions (480, 575 nm) (UV light excitation). The photoluminescence properties reveal that effective energy transfer occurs in Ce(3+) /Dy(3+) co-doped Sr(3) MgSi(2) O(8)phosphors, and the co-doping of Ce(3+) could enhance the emission intensity of Dy(3+) to a certain extent by transferring its energy to Dy(3+) . The Ce(3+) /Dy(3+) energy transfer was investigated by emission/excitation spectra, and photoluminescence decay behaviors. In Sr2.94 MgSi2 O8 :0.01Ce(3+) , 0.05Dy(3+) phosphors, the fluorescence lifetime of Dy(3+) (from 3.35 to 27.59 ns) is increased whereas that of Ce(3+) is greatly decreased (from 43.59 to 13.55 ns), and this provides indirect evidence of the Ce(3+) to Dy(3+) energy transfer. The varied emitted color of Sr(3) MgSi(2) O(8):Ce(3+) , Dy(3+) phosphors from blue to white were achieved by altering the concentration ratio of Ce(3+) and Dy(3+) . These results indicate Sr(3) MgSi(2) O(8):Ce(3+) , Dy(3+) may be as a candidate phosphor for white light-emitting diodes.
Sr(3) MgSi(2) O(8) :Ce(3+), Dy(3+) 荧光粉通过固态反应技术制备,并研究了其光致发光性能。发射光谱不仅显示了 Ce(3+) 离子(403nm)的带,还显示了 Dy(3+) 离子(480、575nm)的带(紫外光激发)。光致发光性能表明,Ce(3+) /Dy(3+) 共掺杂 Sr(3) MgSi(2) O(8) 荧光粉中发生了有效的能量转移,Ce(3+) 的共掺杂通过将其能量转移到 Dy(3+) ,在一定程度上增强了 Dy(3+) 的发射强度。通过发射/激发光谱和光致发光衰减行为研究了 Ce(3+) /Dy(3+) 能量转移。在 Sr2.94 MgSi2 O8 :0.01Ce(3+), 0.05Dy(3+) 荧光粉中,Dy(3+) 的荧光寿命(从 3.35 到 27.59ns)增加,而 Ce(3+) 的荧光寿命大大降低(从 43.59 到 13.55ns),这提供了 Ce(3+) 到 Dy(3+) 能量转移的间接证据。通过改变 Ce(3+) 和 Dy(3+) 的浓度比,Sr(3) MgSi(2) O(8):Ce(3+), Dy(3+) 荧光粉的发射颜色从蓝色变为白色。这些结果表明 Sr(3) MgSi(2) O(8):Ce(3+), Dy(3+) 可能是白光发光二极管的候选荧光粉。