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The effect of fluorine and tungsten co-doping on optical, electrical and structural properties of tin (IV) oxide thin films prepared by sol–gel spin coating method

机译:氟和钨共掺杂对溶胶-凝胶旋涂法制备的氧化锡薄膜的光学,电学和结构性能的影响

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by a sol–gel spin coating method. The effect of F and W co-dopant ratio on optical, electrical and structural properties of SnO_2 was investigated. It was found that the optical properties of the films were obviously affected by the co-dopant ratio. When the F:W co-dopant ratio increases from 0.25:0.25 to 0.75:0.50, the transmittance in the short wavelengths slightly increases and transmittance edge shifts towards shorter wavelength. With an increase in the co-dopant ratio, the reduction and red shifts in the optical transmittance edge are very obvious at all wavelengths. Transmittance values at 550 nm for the films have varied between 79.64% and 50.20%. The indirect and direct band gap values for WFTO-1, WFTO-2, WFTO-3 and WFTO-4 samples were calculated to be 3.73, 3.79, 3.48, 3.40 eV and 4.03, 4.04, 3.98, 3.97 eV, respectively. The crystal structure of the films has been investigated by X-ray diffraction patterns. It has been observed that WFTO-1 and WFTO-2 samples have (111) preferential orientation corresponding to SnO_2 cubic phase. This orientation almost disappears and changes to tetragonal phase (110) orientation for WFTO-3 and WFTO-4. To the best of our knowledge, this is the first cubic structure observation for SnO_2 grown by the sol–gel technique. The electrical properties were also changed with co-doping ratio. The best optical, electrical and structural properties were obtained for mole ratio 0.75:0.50 (F:W).
机译:通过溶胶-凝胶旋涂法。研究了F和W共掺杂比对SnO_2的光学,电学和结构性能的影响。发现膜的光学性能明显受共掺杂比的影响。当F:W共掺杂比从0.25:0.25增加到0.75:0.50时,短波长的透射率会略有增加,并且透射率的边缘会移向较短的波长。随着共掺杂比的增加,在所有波长下光透射率边缘的减少和红移都非常明显。薄膜在550 nm处的透射率值在79.64%和50.20%之间变化。 WFTO-1,WFTO-2,WFTO-3和WFTO-4样本的间接和直接带隙值分别计算为3.73、3.79、3.48、3.40 eV和4.03、4.04、3.98、3.97 eV。已经通过X射线衍射图研究了膜的晶体结构。已经观察到,WFTO-1和WFTO-2样品具有对应于SnO_2立方相的(111)优先取向。对于WFTO-3和WFTO-4,此方向几乎消失并且变为四方相(110)方向。据我们所知,这是通过溶胶-凝胶技术生长的SnO_2的第一个立方结构观察。电性能也随共掺杂比而改变。当摩尔比为0.75:0.50(F:W)时,可获得最佳的光学,电气和结构性能。

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