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首页> 外文期刊>Solid state sciences >Development of WO3-Gd2O3- B2O3 high density glasses doped with Dy3+ for photonics and scintillation materials application
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Development of WO3-Gd2O3- B2O3 high density glasses doped with Dy3+ for photonics and scintillation materials application

机译:WO3-GD2O3-B2O3高密度玻璃的研制掺杂有DY3 +的光子和闪烁材料应用

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摘要

The Dy3+ ions doped tungsten gadolinium borate (Dy-WGdB) glasses were synthesis by the melt-quenching technique with various Dy2O3 concentrations. The physics, optical and several types of luminescence properties in the Dy-WGdB glass samples were researched. Glass densities (similar to 6.0 g/cm(3)) indicates that the compaction of glass is high and rise with an increment of Dy2O3 concentrations. The Dy-WGdB glass samples absorb photons in visible light (VIS) and near-infrared (NIR) region from the absorption spectra. For photo-, radio- and proton luminescence, the highest emission was observed at 575 nm, corresponding to Dy3+ transition F-4(9/2) -> H-6(13/2). The maximum concentration of Dy2O3 doped in the WGdB glass is 1.0 mol%, which has achieved the highest emission intensity in all three types of luminescence. For 1.0 mol% doped glass, the decay times under pulse X-ray excitation was measured and found to be 0.216 ms. The temperature dependent luminescence spectra of the 1.0% doped glass in a temperature range, 10 K-300 K was measured and found the thermal quenching. In this research, under the photo, X-ray and proton excitation, the WGdB glass doped with Dy2O3 displays the strong luminescence in the VIS region. It has the potential for applications in high-energy and nuclear physics, radiation control and homeland security.
机译:DY3 +离子掺杂钨钆硼酸钆(DY-WGDB)玻璃由具有各种DY2O3浓度的熔体淬火技术合成。研究了Dy-WGDB玻璃样品中的物理,光学和几种类型的发光性质。玻璃密度(类似于6.0g / cm(3))表明玻璃的压实高,并以DY2O3浓度的增量升高。根据吸收光谱,Dy-WGDB玻璃样品吸收可见光(VIS)和近红外(NIR)区域的光子。对于光学 - ,无线电和质子发光,在575nm处观察到最高发射,对应于DY3 +转变F-4(9/2) - > H-6(13/2)。在WGDB玻璃中掺杂的Dy2O3的最大浓度为1.0mol%,在所有三种类型的发光中取得了最高的发光强度。对于1.0mol%掺杂玻璃,测量脉冲X射线激发下的衰减时间,并发现为0.216ms。测量1.0%掺杂玻璃的温度依赖性发光光谱,测定10k-300k,并发现热淬火。在本研究中,在照片,X射线和质子激发下,掺杂有DY2O3的WGDB玻璃在VIS区域中显示出强烈的发光。它具有高能量和核物理学,辐射控制和国土安全的应用。

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