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首页> 外文期刊>Physical Review, B. Condensed Matter >EXAFS STUDIES OF RARE-EARTH METAPHOSPHATE GLASSES
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EXAFS STUDIES OF RARE-EARTH METAPHOSPHATE GLASSES

机译:稀土金属偏磷酸盐玻璃的透水研究

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An extended x-ray-absorption fine structure (EXAFS) study has been carried out on a range of rare-earth metaphosphate R(PO3)(3) glasses of growing interest in optical communications and laser technologies. Phosphate glasses modified using the rare-earth oxides Pr6O11, Nd2O3, Eu2O3, Gd2O3, Tb2O3, and Ho2O3, have been investigated using their respective rare-earth L(III) absorption edges. The data provide information on the local environment of the rare-earth ion within the phosphate glass matrix constructed from linked PO4 tetrahedra. The rare-earth ions occupy sites with an average coordination number in the range, 6 less than or equal to N less than or equal to 8, the surrounding atoms being oxygen. The first shell interatomic distance over the range of rare-earth ions establishes the rare-earth contraction of ionic radii with increasing atomic number in a series of glasses. There is also evidence for a rare-earth-phosphorus correlation between 2.7 and 3.6 Angstrom: and a further rare-earth-oxygen correlation at approximately 4 Angstrom. The EXAFS spectrum shows no evidence for R-R correlations within the short-range order, a result especially pertinent to the optical and magnetic properties of the glasses. The fractal dimensionality 4C(11)/B of these glasses, obtained from the elastic stiffnesses determined from ultrasonic wave velocities, ranges between 2.3 and 2.8, indicating that their connectivity tends towards having a three-dimensional character. [References: 27]
机译:已对一系列对光通信和激光技术越来越感兴趣的稀土偏磷酸盐R(PO3)(3)玻璃进行了扩展的X射线吸收精细结构(EXAFS)研究。使用稀土氧化物Pr(3)的吸收边缘研究了使用稀土氧化物Pr6O11,Nd2O3,Eu2O3,Gd2O3,Tb2O3和Ho2O3改性的磷酸盐玻璃。数据提供了有关由链接的PO4四面体构成的磷酸盐玻璃基质中稀土离子的局部环境的信息。稀土离子占据的平均配位数在6小于或等于N小于或等于8的范围内,周围的原子为氧。在一系列玻璃中,在稀土离子范围内的第一个壳原子间距离确定了离子半径的稀土收缩,其原子序数增加。也有证据表明稀土磷的相关性在2.7至3.6埃之间:并且进一步的稀土氧相关性在约4埃处。 EXAFS光谱没有显示出在短距离范围内具有R-R相关性的证据,这一结果尤其与玻璃的光学和磁性有关。从由超声波速度确定的弹性刚度获得的这些玻璃的分形维数4C(11)/ B在2.3至2.8之间,这表明它们的连通性倾向于具有三维特征。 [参考:27]

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