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Effect of Host Glass and Semiconducting Nanoarticles on the Optical Properties of Rare Earth Ions in Lead/Bismuth Telluroborate Glasses.

机译:主体玻璃和半导体纳米制品对铅/碲硼酸铋铋玻璃中稀土离子光学性能的影响。

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摘要

The optical properties of rare earth ions (RE) Sm3+ in bismuth telluroborate and lead telluroborate glasses are studied as a function of glass composition with Bi2O3 content (29.5 to 59.5 mol%) and PbO (29.5 to 49.5 mol%). We also studied the effect of semiconducting nanoparticle CdSe on the absorption and fluorescence emission of Sm3+ in both bismuth and lead telluroborate glasses for different annealing hours (3 to 26 hrs.). Optical absorption is used to calculate the absorption coefficient and the number density of rare-earth (RE) ions is calculated from the measurement of the glass density. Optical absorption and fluorescence spectra of these RE doped bismuth and lead telluroborate glasses are analyzed using Judd-Ofelt theory. The compositional dependence of Judd-Ofelt intensity parameters, O t (t=2,4,6,) are determined and then used to calculate the radiative transition probability of the excited states, the total radiative transition probability, branching ratios, and radiative lifetime of the glasses. These intensity parameters represent changes in the symmetry of the ligand field at the Sm3+ site (due to structural group changes and changes in Sm-O covalency). From the fluorescence spectra, obtained using 404nm and 488 nm excitation wavelength, the stimulated emission cross-section of the excited states is calculated as a function of glass composition. In all the glass systems studied, it is found that the optical properties are strongly influenced by structural changes arising from compositional variation and size of nanoparticles. The color coordinates corresponding to the prominent emissions of the glass samples are determined by using the CIE Color Matching Function Calculator. The purity of these colors is also measured using the CIE color coordinate diagram. The emission color for our glass samples mostly lies in the region of white, orange and pink.
机译:研究了碲化硼酸铋和碲化硼酸铋玻璃中稀土离子(RE)Sm3 +的光学性质与Bi2O3含量(29.5至59.5 mol%)和PbO(29.5至49.5 mol%)的玻璃组成的关系。我们还研究了半导体纳米CdSe对铋和碲硼酸铅玻璃中Sm3 +在不同退火时间(3至26小时)的吸收和荧光发射的影响。使用光吸收来计算吸收系数,并通过玻璃密度的测量来计算稀土(RE)离子的数量密度。使用Judd-Ofelt理论分析了这些稀土掺杂铋和碲硼酸铅玻璃的光吸收和荧光光谱。确定Judd-Ofelt强度参数O t(t = 2,4,6,)的成分依赖性,然后将其用于计算激发态的辐射跃迁几率,总辐射跃迁几率,分支比和辐射寿命的眼镜。这些强度参数表示Sm3 +位点上配体场的对称性变化(由于结构基团的变化和Sm-O共价的变化)。从使用404nm和488nm激发波长获得的荧光光谱,计算出激发态的受激发射截面与玻璃组成的关系。在所有研究的玻璃系统中,发现光学性能受纳米颗粒的组成变化和尺寸引起的结构变化的强烈影响。通过使用CIE颜色匹配功能计算器,可以确定与玻璃样品的突出发射量相对应的颜色坐标。这些颜色的纯度也使用CIE颜色坐标图进行测量。我们的玻璃样品的发射颜色主要位于白色,橙色和粉红色区域。

著录项

  • 作者

    Rijal, Suman.;

  • 作者单位

    Western Illinois University.;

  • 授予单位 Western Illinois University.;
  • 学科 Physics.;Materials science.
  • 学位 M.S.
  • 年度 2017
  • 页码 161 p.
  • 总页数 161
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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