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Structure and Photoluminescence Properties of Rare-Earth (Dy

机译:稀土的结构和光致发光性质(Dy

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摘要

Barium tungstate (BaWO4) powders with various sintering temperatures, and BaWO4:Dy3+ phosphor samples with concentrations of different rare-earth (RE) activator ions (Dy3+, Sm3+, Tb3+) were prepared through co-precipitation. The structural, morphological, and photoluminescent characteristics of barium tungstate phosphors depend on the concentration of RE ions. The crystallographic characteristics of the synthesized BaWO4 were analyzed using X-ray diffraction (XRD) patterns. The size and shape of the crystalline particles were estimated based on images measured with a field emission scanning electron microscope (FE-SEM). As the sintering temperature of the BaWO4 particles increased from 400 °C to 1000 °C, the size of the particles gradually increased and showed a tendency to clump together. In the sample doped with 7 mol % Dy3+ ions, the intensity of all emission bands reached their maximum. The emission spectra of the RE3+-doped BaWO4 powders by excitation at 325 nm were composed of yellow (Dy3+), red (Sm3+), and green (Tb3+) band at 572, 640, and 544 nm. This indicates that most of the RE3+ ions absorbed the position without reversal symmetry in the BaWO4 lattice. These results propose that strong emission intensity and tunable color for the phosphors can be accomplished by rare-earth doped host with an suitable quantity. In addition, the phosphor thin films, having high transparency from aqueous colloidal solutions, were deposited on banknotes, and it is considered whether it is suitable for anti-counterfeiting applications.
机译:通过共沉淀制备具有各种烧结温度的碳酮(Bawo4)粉末和Bawo4:DY3 +磷光体样品,通过共沉淀制备不同稀土(RE)活化剂离子(DY3 +,SM3 +,TB3 +)的浓度。钨酸钡磷光体的结构,形态和光致发光特性取决于再离子的浓度。使用X射线衍射(XRD)图案分析合成Bawo4的晶体特性。基于用场发射扫描电子显微镜(Fe-SEM)测量的图像估计结晶颗粒的尺寸和形状。随着BAWO4颗粒的烧结温度从400℃增加至1000℃,颗粒的尺寸逐渐增加并且显示在一起丛集的趋势。在掺杂有7mol%DY3 +离子的样品中,所有发射带的强度达到其最大值。通过在325nm的激发激发的Re3 +掺杂的Bawo4粉末的发射光谱由572,640和544nm处的黄色(DY3 +),红色(SM3 +)和绿色(TB3 +)带组成。这表明大多数RE3 +离子在Bawo4晶格中没有反转对称的情况吸收了位置。这些结果提出了磷光体的强烈的发光强度和可调谐颜色可以通过具有合适量的稀土掺杂宿主完成。另外,磷光体薄膜沉积在炭溶液中具有高透明度,沉积在纸币上,并且考虑其是否适合于抗假冒应用。

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