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首页> 外文期刊>New Journal of Chemistry >Effect of Ca2+ ion co-doping on radiative properties via tuning the local symmetry around the Eu3+ ions in orange red light emitting GdPO4:Eu3+ phosphors
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Effect of Ca2+ ion co-doping on radiative properties via tuning the local symmetry around the Eu3+ ions in orange red light emitting GdPO4:Eu3+ phosphors

机译:Ca2 +离子共掺杂对橙红光发射橙红光局部对称局部对称性的辐射性能的影响:Eu3 +磷光体

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摘要

A series of Ca2+ substituted GdPO4:Eu3+ novel phosphors were prepared via the solid state method. Rietveld refinement of the XRD data and transmission electron microscopy results confirmed that all these compounds adopted the monazite phase with space group P21/n. Fourier transform infrared spectroscopy (FTIR) analysis confirmed the presence of the characteristic vibrational bands for host matrix of GdPO4, and field emission scanning electron microscopy (FESEM) results revealed that the particles possess agglomerated granular morphology. Photo-luminescent spectra displayed the representative luminescence D-5(0) F-7(J) (J = 0-4) intra-4f shell Eu3+ ion transitions. The magnetic dipole (D-5(0) F-7(1)) transition was stronger than the electric dipole (D-5(0) F-7(2)) transition. On co-doping Ca2+ content to Gd0.93Eu0.07PO4 phosphor, we observed the enhanced PL intensity as a function of Ca2+ content; the maximum intensity of 1.5 times was observed for 7 mol% of calcium doped Gd0.93Eu0.07PO4 phosphor. The enhancement of the PL intensity owing to the effective ionic radius and the mismatch in Pauling's electronegativity between co-dopant and host cations causes distortion of local crystal field surrounding the Eu3+ ions. Furthermore, this local distortion or reduced symmetry effect around the Eu3+ ions was reconfirmed by the Judd-Ofelt and life time decay analyses. The evaluated 1931 Commission International de l'Eclairage (CIE) chromaticity color coordinates exhibit orange red emission (x = 0.6247, y = 0.3748) with minimal CCT values and high color purity. This class of phosphors possessed excellent thermal stability at high temperature, and the integrated emission intensity at 423 K was about 66% of that at 303 K. Considering the above results, the Eu3+/Ca2+ co-doped GdPO4 phosphors have potential applications in the near-UV excited white light emitting diodes.
机译:通过固态方法制备一系列CA2 +取代的GDPO4:EU3 +新磷光体。 XRD数据和透射电子显微镜的RIETVELD细化证实,所有这些化合物都采用了空间组P21 / N的单一岩相。傅里叶变换红外光谱(FTIR)分析证实了GDPO4的宿主基质的特征振动带的存在,以及场发射扫描电子显微镜(FESEM)结果显示颗粒具有附聚的颗粒形态。光发光光谱显示代表发光D-5(0)F-7(J)(J = 0-4)Intra-4F壳EU3 +离子转换。磁性偶极子(D-5(0)F-7(1))转变比电偶极(D-5(0)F-7(2))转变强。在共掺杂Ca2 +含量至Gd0.93EU0.07PO4磷光体上,我们观察到作为Ca2 +含量的函数的增强型PL强度;对于7mol%的钙掺杂Gd0.93EU0.07PO4磷光体,观察到最大强度为1.5倍。由于有效的离子半径和鲍出在共掺杂剂和托阳离子之间的电阻的不匹配而增强PL强度导致围绕EU3 +离子的局部晶体场的变形。此外,通过Judd -FeLET和终身衰变分析重新确认了这种局部变形或围绕EU3 +离子的对称效应。评估的1931年委托国际DE L'EclaReage(CIE)色度颜色坐标具有橙色红色发射(x = 0.6247,y = 0.3748),CCT值最小,高色纯度。这类磷光体在高温下具有优异的热稳定性,并且在423k的集成发射强度为303k的66%。考虑到上述结果,Eu3 + / Ca2 +共掺杂GDPO4磷光体在附近具有潜在的应用-uv兴奋的白光发光二极管。

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  • 来源
    《New Journal of Chemistry》 |2019年第1期|共9页
  • 作者单位

    Indian Inst Sci Solid State &

    Struct Chem Unit Bangalore 560012 Karnataka India;

    Indian Inst Sci Solid State &

    Struct Chem Unit Bangalore 560012 Karnataka India;

    Indian Inst Sci Solid State &

    Struct Chem Unit Bangalore 560012 Karnataka India;

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  • 正文语种 eng
  • 中图分类 化学;
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