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首页> 外文期刊>International Scholarly Research Notices >Effect of Stepwise Replacement of Non-Oxide to Oxide Group on Structural Properties ofBi2O3·LiF·B2O3Glasses
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Effect of Stepwise Replacement of Non-Oxide to Oxide Group on Structural Properties ofBi2O3·LiF·B2O3Glasses

机译:逐步氧化取代非氧化物对Bi2O3·LiF·B2O3玻璃结构性能的影响

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Bismuth fluoroborate glasses with compositionsxBi2O3·(40 −x)LiF·60 B2O3(x= 0, 5, 10, 15, and 20) are synthesized by melt-quench method. XRD pattern is obtained for all the samples to confirm their amorphous nature. FTIR spectroscopy is carried out for the reported samples. It reflects the effect of replacement of a non-oxide group (LiF) with an oxide group (Bi2O3) in the glass network, due to the presence of the various absorption bands and their shifting with such replacement, assigning a role of network modifier to Bi2O3. Density and molar volume show an increase in their values with increase in Bi2O3concentration. Theoretical optical basicity is calculated for the reported samples, which shows a decreasing trend with the increasing concentration of Bi2O3.
机译:通过熔融淬火法合成了组成为xBi2O3·(40 -x)LiF·60 B2O3(x = 0、5、10、15和20)的氟硼酸铋玻璃。获得所有样品的XRD图,以证实其无定形性质。 FTIR光谱仪用于报告的样品。它反映了玻璃网络中非氧化物基团(LiF)被氧化物基团(Bi2O3)取代的效果,这归因于各种吸收带的存在及其在这种取代下的移动,从而将网络改性剂的作用赋予了Bi2O3。密度和摩尔体积显示其值随Bi2O3浓度的增加而增加。计算出报告样品的理论光学碱度,随着Bi2O3浓度的增加,光学碱度呈下降趋势。

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