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Structural, mechanical and optical investigations in the TeO2-rich part of the TeO2-GeO2-ZnO ternary glass system

机译:Teo2-Geo2-Zno三元玻璃系统的TEO2丰富部分结构,机械和光学研究

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Stable glasses are successfully synthesized in the TeO2-GeO2-ZnO system at 850 degrees C by the melt-quenching method and the glass forming domain is determined in the TeO2-rich part of the diagram. The thermal study, carried out using differential scanning calorimetry, reveals that the glass transition temperature, as well as the thermal stability, increases with the addition of ZnO or GeO2. Bulk glass samples are elaborated within two series of compositions, corresponding to fixed concentrations in GeO2 (respectively 5 or 10 mol. %), and to various contents in ZnO. Structural changes caused by the ZnO addition are discussed based on Raman spectroscopy data. A progressive but very moderate network depolymerization is shown with increasing amount of ZnO. However, two different regimes can be identified, depending on the ZnO content. It is believed that ZnO acts as a network modifier for compositions below 20 mol. %, and starts to participate as a glass network former over such concentration. It is well evidenced that GeO2 contributes to the increase in Young's modulus E, evaluated from ultrasonic echography measurements. In addition, this oxide favors the network reticulation detected by the decrease of the Poisson ratio and the increase of the fractal bond connectivity. However, the role of ZnO is more complicated and will be extensively discussed. The decrease in the atomic packing density C-g probably explains the global evolution of E as a function of ZnO content. The refractive indices and optical band gap energies are extracted from UV-Visible-NIR optical transmission data. For the studied glasses, it is found that the transmission threshold decreases with larger ZnO contents, reflecting the increase in the optical band gap value. Refractive index is finally seen to decrease as a function of both ZnO and GeO2 contents. Such variation is explained by the decrease of the molar electronic polarizability, and by the lower optical basicity values known for TeO3 entities in comparison to TeO4 units. (C) 2014 Elsevier Masson SAS. All rights reserved.
机译:通过熔融淬火方法在850℃下成功地合成TEO2-GEO2-ZnO系统中成功合成稳定的眼镜,并在富含TEO2的部分中测定玻璃形成结构域。使用差示扫描量热法进行的热学研究表明玻璃化转变温度以及热稳定性随着添加ZnO或Geo2而增加。散装玻璃样品在两系列组合物中阐述,对应于Geo2(分别为5或10mol.%)的固定浓度,以及ZnO中的各种内容物。基于拉曼光谱数据讨论由ZnO添加引起的结构变化。 ZnO量的增加显示了进度但非常温和的网络解聚。然而,根据ZnO含量,可以识别出两个不同的制度。据信,ZnO充当了20摩尔的组合物的网络改性剂。 %,并开始作为玻璃网以前参与这种浓度。有很大证明了从超声波图像测量评估的杨氏模量e的增加有助于增加杨氏模量e。此外,这种氧化物利用泊松比减小和分形粘合连通性的增加来检测的网络标纹。但是,ZnO的作用更复杂,并将被广泛讨论。原子填充密度C-G的降低可能解释了作为ZnO含量的函数的全局演变。从UV-Visible-Nir光传输数据提取折射率和光带隙能量。对于研究的眼镜,发现透射阈值随着较大的ZnO内容物而减小,反映了光带隙值的增加。终原认为折射率随着ZnO和GEO2内容的函数而减少。通过摩尔电子极化性的降低来解释这种变化,以及与TEO4单位相比,TEO3实体已知的较低光学碱度值。 (c)2014年Elsevier Masson SAS。版权所有。

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