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在紫外光和低能电子束激发下 Ca2Ba3(PO4)3Cl 和 Ca2Ba3(PO4)3Cl:A(A = Eu2+/Ce3+/Dy3+/Tb3+)的发光和能量转移特性。

Luminescence and energy transfer properties of Ca2Ba3(PO4)3Cl and Ca2Ba3(PO4)3Cl:A (A = Eu2+/Ce3+/Dy3+/Tb3+) under UV and low-voltage electron beam excitation.

机构信息

State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, P. R. China.

出版信息

Inorg Chem. 2013 Mar 18;52(6):3102-12. doi: 10.1021/ic3025759. Epub 2013 Mar 6.

Abstract

Pure Ca2Ba3(PO4)3Cl and rare earth ion (Eu(2+)/Ce(3+)/Dy(3+)/Tb(3+)) doped Ca2Ba3(PO4)3Cl phosphors with the apatite structure have been prepared via a Pechini-type sol-gel process. X-ray diffraction (XRD) and structure refinement, photoluminescence (PL) spectra, cathodoluminescence (CL) spectra, absolute quantum yield, as well as lifetimes were utilized to characterize samples. Under UV light excitation, the undoped Ca2Ba3(PO4)3Cl sample shows broad band photoluminescence centered near 480 nm after being reduced due to the defect structure. Eu(2+) and Ce(3+) ion doped Ca2Ba3(PO4)3Cl samples also show broad 5d → 4f transitions with cyan and blue colors and higher quantum yields (72% for Ca2Ba3(PO4)3Cl:0.04Eu(2+); 67% for Ca2Ba3(PO4)3Cl:0.016Ce(3+)). For Dy(3+) and Tb(3+) doped Ca2Ba3(PO4)3Cl samples, they give strong line emissions coming from 4f → 4f transitions. Moreover, the Ce(3+) ion can transfer its energy to the Tb(3+) ion in the Ca2Ba3(PO4)3Cl host, and the energy transfer mechanism has been demonstrated to be a resonant type, via a dipole-quadrupole interaction. However, under the low voltage electron beam excitation, Tb(3+) ion doped Ca2Ba3(PO4)3Cl samples present different luminescence properties compared with their PL spectra, which is ascribed to the different excitation mechanism. On the basis of the good PL and CL properties of the Ca2Ba3(PO4)3Cl:A (A = Ce(3+)/Eu(2+)/Tb(3+)/Dy(3+)), Ca2Ba3(PO4)3Cl might be promising for application in solid state lighting and field-emission displays.

摘要

采用Pechini 溶胶-凝胶法制备了具有磷灰石结构的纯 Ca2Ba3(PO4)3Cl 和稀土离子(Eu(2+)/Ce(3+)/Dy(3+)/Tb(3+))掺杂 Ca2Ba3(PO4)3Cl 荧光粉。利用 X 射线衍射(XRD)和结构精修、光致发光(PL)光谱、阴极发光(CL)光谱、绝对量子产率以及寿命对样品进行了表征。在紫外光激发下,由于缺陷结构,未掺杂的 Ca2Ba3(PO4)3Cl 样品在还原后显示出位于 480nm 附近的宽带光致发光。Eu(2+)和 Ce(3+)掺杂 Ca2Ba3(PO4)3Cl 样品也显示出蓝色和绿色的宽 5d→4f 跃迁,并且具有较高的量子产率(Ca2Ba3(PO4)3Cl:0.04Eu(2+)为 72%;Ca2Ba3(PO4)3Cl:0.016Ce(3+)为 67%)。对于 Dy(3+)和 Tb(3+)掺杂的 Ca2Ba3(PO4)3Cl 样品,它们给出了来自 4f→4f 跃迁的强线发射。此外,Ce(3+)离子可以将其能量传递给 Ca2Ba3(PO4)3Cl 基质中的 Tb(3+)离子,并且能量传递机制已经被证明是共振类型,通过偶极-四极相互作用。然而,在低电压电子束激发下,与 PL 光谱相比,Tb(3+)离子掺杂的 Ca2Ba3(PO4)3Cl 样品呈现出不同的发光性质,这归因于不同的激发机制。基于 Ca2Ba3(PO4)3Cl:A(A=Ce(3+)/Eu(2+)/Tb(3+)/Dy(3+))的良好 PL 和 CL 性能,Ca2Ba3(PO4)3Cl 可能有望应用于固态照明和场发射显示器。

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