...
【24h】

The influence of TiO2 on structural, physical and optical properties of B2O3 -TeO2 - Na2O - CaO glasses

机译:TiO2对B2O3 -TeO2 - Na2O - CaO眼镜结构,物理和光学性能的影响

获取原文
获取原文并翻译 | 示例
           

摘要

B2O3 -TeO2 - Na2O - CaO glasses doped with small concentrations of TiO2, from 0.5 to 3 mol%, were prepared by traditional technique. The changes in the structure of studied glasses were observed by using FTIR technique and it was found that glasses containing different structure units of borate and tellurite groups. The change in the many optical and physical parameters such as density, molar volume, band gap, optical backing density, refractive index and others were studied. The density was found to increase with the addition of TiO2 till 1 mol% then begin to decrease and the opposite trend was observed to molar volume. Energy band gap was measured by two techniques ASF and Tauc's models and their values was very close to each other and to decrease with the addition of TiO2. The refractive index was found to increase with the addition of TiO2 from 2.4 for base glass to 2.59 for glass containing 3 mol% of TiO2. The ionic concentration of Ti, the interionic distance r(i), field strength F, dielectric constant, molar refraction index r(m), molar polarizability, average electronegativity, and the reflection loss (r(L)) were rise with increasing TiO2 content. On the other hand, there are some properties such as transmission coefficient (T) was found to decrease with increasing the concentration of Ti ions.
机译:通过传统技术制备掺杂小浓度TiO2的掺杂浓度的掺杂0.5至3mol%的B2O3 -Teo2 - Na2O - CaO眼镜。通过使用FTIR技术观察研究了玻璃结构的变化,发现含有不同结构单元的硼酸盐和碲酸盐组的眼镜。研究了许多光学和物理参数的变化,例如密度,摩尔体积,带隙,光学背衬密度,折射率等。发现密度随着TiO 2加入1mol%而增加,然后开始降低,观察到摩尔体积相反的趋势。通过两种技术ASF和Tauc的模型测量能量带隙,并且它们的值彼此非常接近并随着TiO 2的添加而降低。发现折射率随从2.4的基础玻璃加入2.59的TiO 2增加,含有3摩尔%的TiO 2的玻璃。 Ti的离子浓度,间隙R(I),场强,介电常数,摩尔折射率R(M),摩尔极化性,平均电负性,以及反射损失(R(L))随着TiO 2而升高内容。另一方面,存在一些特性,例如发现透射系数(T)随着Ti离子的浓度而降低。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号