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首页> 外文期刊>Journal of Non-Crystalline Solids: A Journal Devoted to Oxide, Halide, Chalcogenide and Metallic Glasses, Amorphous Semiconductors, Non-Crystalline Films, Glass-Ceramics and Glassy Composites >Band gap determination by absorption spectrum fitting method (ASF) and structural properties of different compositions of (60-x) V2O5-40TeO(2)-xSb(2)O(3) glasses
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Band gap determination by absorption spectrum fitting method (ASF) and structural properties of different compositions of (60-x) V2O5-40TeO(2)-xSb(2)O(3) glasses

机译:通过吸收光谱拟合方法(ASF)和(60-x)V2O5-40TeO(2)-xSb(2)O(3)玻璃的不同成分的结构性质确定带隙

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摘要

Glasses with compositions (60-x) V2O5-40TeO(2)-xSb(2)O(3) with 0 <= x <= 10 (in mol%) have been prepared using Usual melt quenching method. The position of the absorption edge and hence the values of the optical band gap was found to depend on the glass composition. Using the Tauc model, the absorption spectrum fitting method (ASF) was employed to obtain the optical band gap. This method requires only the measurement of the absorbance spectrum of the sample. For each sample, the width of the band tail was determined. Also, the density and glass transition temperature Values indicate that the rigidity and packing of the samples increase with increase in Sb2O3 concentration.
机译:使用常规的熔融淬火方法制备了成分为(60-x)V2O5-40TeO(2)-xSb(2)O(3)且其含量为0 <= x <= 10(以摩尔%计)的玻璃。发现吸收边缘的位置以及因此光学带隙的值取决于玻璃组成。使用Tauc模型,采用吸收光谱拟合方法(ASF)获得光学带隙。该方法仅需要测量样品的吸收光谱。对于每个样品,确定带尾的宽度。另外,密度和玻璃化转变温度值表明,样品的刚度和堆积率随Sb2O3浓度的增加而增加。

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