Ab'/> <![CDATA[Perceiving impressive optical properties of ternary SiO <ce:inf loc='post'>2</ce:inf>-TiO <ce:inf loc='post'>2</ce:inf>-ZrO <ce:inf loc='post'>2</ce:inf>:Eu <ce:sup loc='post'>3+</ce:sup> sol-gel glasses with high reluctance for concentration quenching: An experimental approach]]>
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2-TiO 2-ZrO 2:Eu 3+ sol-gel glasses with high reluctance for concentration quenching: An experimental approach]]>

机译:<![CDATA [感知Ternary SIO的令人印象深刻的光学属性 2 -tio 2 -ZRO 2> 2 :eu 3 + 溶胶 - 凝胶玻璃,浓缩淬火的高磁阻:实验 方法]]]>

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AbstractEu3+-doped ternary SiO2-TiO2-ZrO2glasses were prepared through a non-hydrolytic sol-gel process. Fourier transform infrared spectroscopy was employed to identify the vibrational modes present in the ternary glass. The phonon energies were calculated using excitation spectrum and complemented well with the vibrational modes in the Raman spectrum. Photoluminescence spectrum was used to assess the luminescent augmentation. The uniform distribution of dopant ions in the as prepared ternary glass aided in achieving a comparatively unmatched doping concentration of Eu3+ion (17.5wt%) without luminescence quenching and it can be attributed to reduced cluster formation. High concentration of rare earth ion incorporation leads to intense and tunable emission with higher brightness. Excellent color purity of the emission by means of CIE color gamut for the red color was observed, which is close to the National Television Standard Committee (NTSC) value. Theoretical investigations of the photophysical parameters and radiative decay time were carried out with Judd-Ofelt analysis. The double exponentially fitted decay curve gave a satisfactory experimental lifetime. These results indicate that tailor made europium doped ternary SiO2-TiO2-ZrO2glasses have potential applications in the areas of photonic devices as well as biological sensors because of its intense tunable and efficient emission, high purity, and low toxicity.
机译:<![cdata [ 抽象 EU 3 + - oped三元sio 2 -tio 2 -zro 2 < / Ce:inf>通过非水解溶胶 - 凝胶工艺制备玻璃。使用傅里叶变换红外光谱法识别三元玻璃中存在的振动模式。使用激励光谱计算声子能量,并用拉曼光谱中的振动模式互补。光致发光光谱用于评估发光增强。在制备的三元玻璃中掺杂剂离子的均匀分布辅助欧盟 3 + 离子(17.5wt%)的相对无与伦比的掺杂浓度而没有发光淬火和它可以归因于减少的群集形成。高浓度的稀土离子掺入导致具有更高亮度的强烈和可调发射。通过CIE色域发射的优异色彩纯度被观察到红色颜色,接近国家电视标准委员会(NTSC)价值。用Judd-elt分析进行了光学参数和辐射衰减时间的理论研究。双指数拟合衰减曲线呈现令人满意的实验寿命。这些结果表明,量身定制的铕掺杂Ternary SiO 2 -tio 2 -ZRO 2 眼镜在光子器件和生物传感器的区域中具有潜在的应用,因为其强烈的可调和高效的发射,高纯度和低毒性。

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