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首页> 外文期刊>Journal of Materials Science >Design and energy transfer mechanism for single-phased Gd2MgTiO6: Bi3+, Eu3+ tunable white light-emitting phosphors
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Design and energy transfer mechanism for single-phased Gd2MgTiO6: Bi3+, Eu3+ tunable white light-emitting phosphors

机译:单相阶段GD2MGTIO6的设计和能量转移机制:BI3 +,EU3 +可调白色发光磷光体

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摘要

In recent years, numerous efforts have been made to develop single-phased white light-emitting phosphors for the near-UV region to solve problems of color reabsorption and ratio regulation between different phosphors. In this work, we have designed Bi3+- and Eu3+-codoped single-phased Gd2MgTiO6 phosphors to achieve tunable white light emission based on multi-luminescence center energy transfer. The structural analysis showed that all the samples were crystallized as a monoclinic double perovskite with the P21/n symmetry space group (No. 14), with HRTEM images showing clear lattice fringes between the lattice planes. The single Bi3+-doped Gd2MgTiO6 sample exhibits two obvious emission peaks at 417 and 508nm, which correspond to a characteristic (P1S0)-P-3-S-1 transition for the Bi3+ ions under near-UV excitation due to two types of Bi3+ emission centers, with their relative emission intensity depending closely on the value of the excitation wavelength. In this case, a suitable choice of excitation wavelength can achieve tunable emission for Gd2MgTiO6: Bi3+ between blue and green. Eu3+ is codoped into Gd2MgTiO6 as a red emission component and shows sharp emission lines that correspond to the characteristic (D0FJ)-D-5-F-7 (J=1, 2, 3, and 4) transitions of Eu3+ ions. Energy transfer in Gd2MgTiO6: Bi3+, Eu3+ has been confirmed by the electric dipole-dipole (d-d) interaction from Bi3+ to Eu3+. Our experiments show that it is straightforward to create tunable white light emission by adjusting the excitation scheme and Eu3+ concentration. Moreover, a schematic for the energy transfer mechanism and simplified spectral levels based on Bi3+ and Eu3+ ions has also been established.
机译:近年来,已经进行了许多努力,为接近UV区域开发单相白光荧光粉,以解决不同磷光体之间的颜色重吸收和比例的问题。在这项工作中,我们设计了Bi3 + - 和Eu3 + -codoped的单相阶段的Gd2mgtio6磷光体,以实现基于多发光中心能量转移的可调白色发光。结构分析表明,所有样品用P21 / N对称空间组(14号)结晶,用HRTEM图像显示晶格平面之间的透明晶格条纹。单一Bi3 +掺杂的Gd2mgTiO6样品在417和508nm处表现出两个明显的发射峰,其对应于由于两种类型的Bi3 +排放而在接近UV激励下的Bi3 +离子的特征(P1S0)-P-3-S-1转变中心,具有相对发光强度,根据激发波长的值密切相关。在这种情况下,合适的激发波长选择可以在蓝色和绿色之间实现Gd2mgTiO6:Bi3 +的可调发射。 Eu3 +作为红色发射组分编写为Gd2mgTiO6,并且显示出与Eu3 +离子的特性(D0FJ)-D-5-F-7(J = 1,2,3和4)转变对应的急剧发射线。通过从Bi3 +至Eu3 +的电偶极子 - 偶极子(D-D)相互作用证实了Gd2mgTiO6:Bi3 +,Eu3 +的能量转移。我们的实验表明,通过调节激发方案和EU3 +浓度,可以简单地创建可调白色发光。此外,还建立了基于Bi3 +和Eu3 +离子的能量转移机构和简化光谱水平的示意图。

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  • 来源
    《Journal of Materials Science》 |2019年第5期|共17页
  • 作者单位

    Wenzhou Univ Coll Life &

    Environm Sci Wenzhou 325035 Peoples R China;

    Wenzhou Univ Coll Life &

    Environm Sci Wenzhou 325035 Peoples R China;

    Wenzhou Univ Coll Life &

    Environm Sci Wenzhou 325035 Peoples R China;

    Wenzhou Univ Coll Life &

    Environm Sci Wenzhou 325035 Peoples R China;

    Wenzhou Univ Coll Chem &

    Mat Engn Wenzhou 325035 Peoples R China;

    Wenzhou Univ Coll Chem &

    Mat Engn Wenzhou 325035 Peoples R China;

    Wenzhou Univ Coll Chem &

    Mat Engn Wenzhou 325035 Peoples R China;

    Wenzhou Univ Coll Life &

    Environm Sci Wenzhou 325035 Peoples R China;

    Wenzhou Univ Coll Life &

    Environm Sci Wenzhou 325035 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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