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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Exploitation of Eu3+ red luminescence through order-disorder structural transitions in lanthanide stannate pyrochlores for warm white LED applications
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Exploitation of Eu3+ red luminescence through order-disorder structural transitions in lanthanide stannate pyrochlores for warm white LED applications

机译:通过镧系元素结构转变的镧系元素型甘蓝型甘蓝型甘蓝型甘蓝型辉煌白色LED应用剥削eU3 +红发

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摘要

Eu3+ ions epitomize excellent structural probes for the detection of disorder induced by structural variations in stannate pyrochlores due to their relatively simple energy level structure. In this context, we have synthesized a series of Eu3+ doped Ln(2.85)YSnNbO(10.5):0.15Eu(3+) (Ln = La, Gd, Y, and Lu) red phosphors via a high temperature solid state reaction method to explore the influence of phase evolution on the luminescence properties. The substitution of Ln(3+) ions in the A sites of the pyrochlore induces a structural transition from an ordered pyrochlore to a disordered fluorite structure with decreasing ionic radius. The diminishing trend of the characteristic superstructure peaks in the XRD pattern and the broadening of Raman modes with lanthanide substitution clearly substantiate the disorder induced in the cationic sublattice. These phosphors exhibit strong absorption in the near UV region and emit red luminescence under 392 nm excitation, which also correlates to their crystal structures. Their luminescence properties were enhanced with the increased ordering of cations from Lu to La. The more ordered structure of the La system favors a more uniform distribution of Eu3+ ions, preventing cluster formation, and thus improving the luminescence properties. The splitting of the D-5(0)-F-7(1) transition of the Eu3+ ions further provides a clue for the structural transition in support of the XRD and Raman analysis. The long range ordering, ligand polarizability, and covalent nature of the Eu3+ bonding influence the emission probability and improve the quantum efficiency of the La host. Eu3+ emissions resulting from D-5(0)-F-7(J) transitions are significantly improved with increases in the concentration of Eu3+ ions in the La host. The distortion of the A site symmetry and the red shift of the charge transfer band with Eu3+ doping in the La3YSnNbO10.5 system leads to an enhanced electric dipole transition. The extent of the distortion in the EuO8 polyhedra is reflected in the quantum efficiency values and J-O intensity parameters, Omega(2) and Omega(4), which are a measure of the degree of polarizability of the Eu-O bonds in the lattice. Our results suggest that we can manipulate the Eu3+ red luminescence in lanthanide stannate pyrochlores through order-disorder structural transitions.
机译:Eu3 +离子由于其相对简单的能级结构而缩影了通过它们相对简单的能量水平结构而阐述了通过它们的结构变化引起的病症诱导的病症。在这种情况下,我们通过高温固态反应方法合成了一系列EU3 +掺杂LN(2.85)YSNNBO(10.5):0.15EU(3+)(LN = LA,GD,Y和LU)红色磷光体探讨相进化对发光性质的影响。在宾廊的一个位点中的LN(3+)离子的取代会使来自有序的烧型烧焦与无序的萤石结构的结构转变,随着离子半径的降低。 XRD图案中特征超结构峰的递减趋势及镧系元素替代的拉曼模式的扩大明确证实了阳离子子组中诱导的病症。这些磷光体在接近UV区域中表现出强烈的吸收,并在392nm激发下发出红色发光,这也与其晶体结构相关。随着LU到LA的阳离子的顺序增加,它们的发光性质得到了增强。LA系统的越多的结构有利于更均匀的EU3 +离子分布,防止簇形成,从而改善发光性质。 EU3 +离子的D-5(0)-F-7(1)转变的分裂还提供了用于支持XRD和拉曼分析的结构转变的线索。 Eu3 +键合的长距离排序,配体极化和共价性质影响了发射概率并提高了La主体的量子效率。由La主体中Eu3 +离子的浓度的增加,由D-5(0)-F-7(J)转变产生的EU3 +排放量显着提高。在LA3YSNNO10.5系统中具有EU3 +掺杂的电荷转移带的变形和电荷转移带的红色移位导致增强的电偶极转变。 EuO8多面体的变形程度反映在量子效率值和J-O强度参数,Omega(2)和Omega(4)中反映,这是晶格中EU-O键的极化程度的量度。我们的研究结果表明,我们可以通过秩序障碍结构转变来操纵镧系元素苷烧焦中的EU3 +红发。

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    CSIR Natl Inst Interdisciplinary Sci &

    Technol NI Mat Sci &

    Technol Div Trivandrum 695019 Kerala India;

    CSIR Natl Inst Interdisciplinary Sci &

    Technol NI Mat Sci &

    Technol Div Trivandrum 695019 Kerala India;

    CSIR Natl Inst Interdisciplinary Sci &

    Technol NI Mat Sci &

    Technol Div Trivandrum 695019 Kerala India;

    CSIR Natl Inst Interdisciplinary Sci &

    Technol NI Mat Sci &

    Technol Div Trivandrum 695019 Kerala India;

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  • 正文语种 eng
  • 中图分类 物理学;化学;
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