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Role of Te on the spectroscopic properties of As50Se40Te10 thin films: An extensive study by FTIR and Raman spectroscopy

机译:Te在As50Se40Te10薄膜的光谱特性中的作用:FTIR和拉曼光谱的广泛研究

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Amorphous As50Se50 and As50Se40Te10 thin films were prepared on glass substrates by using thermal evaporation method. The transmission spectra T (lambda) of the films at normal incidence were measured in the wavelength range 400-1100 nm. A straightforward analysis proposed by Swanepoel based on the use of the maxima and minima of the interference fringes has been used to drive the refractive index(n) and the extinction coefficient(k). The addition of Te into As50Se50 is found to increase the refractive index and the extinction coefficient of the As50Se40Te10 films. With the addition of Te into As50Se50, the optical band gap decreases due to the increase in disorderness. The urbach energy and tauc parameter is changed due to the Te incorporation which measures the disorderness. The optical absorption is due to allowed indirect transition and the chemical bond approach has been applied successfully to interpret the decrease of the optical gap. The Raman shift observed in the two films clearly supports the optical changes due to Te addition. (C) 2017 Elsevier B.V. All rights reserved.
机译:采用热蒸发法在玻璃基板上制备了非晶As50Se50和As50Se40Te10薄膜。在400-1100nm的波长范围内测量法线入射的膜的透射光谱T(λ)。 Swanepoel基于干涉条纹的最大值和最小值的使用提出的直接分析已用于驱动折射率(n)和消光系数(k)。发现将Te添加到As50Se50中可以增加As50Se40Te10膜的折射率和消光系数。在Te50Se50中添加Te后,由于无序度的增加,光学带隙减小。 urbach能量和tauc参数由于Te的掺入而改变,Te的掺入可以测量无序度。光学吸收归因于允许的间接跃迁,化学键方法已成功应用于解释光学间隙的减小。在两张薄膜中观察到的拉曼位移清楚地支持了由于添加Te引起的光学变化。 (C)2017 Elsevier B.V.保留所有权利。

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