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Structural and optical characterization of V- and W-doped SnS2 thin films prepared by spray pyrolysis

机译:喷雾热解制备的掺V和W的SnS2薄膜的结构和光学特性

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Tin(IV) sulfide (SnS2) doped with V ions are promising intermediate band solar cell materials. In this work, we demonstrate the possibility of preparing thin films of Sn0.75V0.25S2 and Sn0.75W0.25S2 using the spray pyrolysis deposition method. Successful attempts are reported when a water/ethanol mixture at 9:1 ratio was used as a solvent and the deposition temperature was set at 360 degrees C. The samples were characterized by x-ray diffraction, atomic force microscopy, micro-Raman spectroscopy and UV-Vis-NIR optical transmission measurements. The analysis of the data showed that all the samples are crystalline with no impurities. Optical transmission data revealed that the direct and the indirect band gaps of SnS2 are found to be 2.25 and 2.15 eV, respectively. These values decrease as the samples were doped with V- and W-ions. The direct band gap values are found to fall within the 1.56-1.75 eV range while the indirect band gap values are found to be within the 1.55-1.70 eV range. Furthermore, the effect of doping caused the optical absorption coefficient to approximately be double of its values in a broad range extending from the visible to the near infrared regions. These findings suggest that Sn0.75V0.25S2 and Sn0.75W0.25S2 can be used as new potential solar energy absorbers in photovoltaic devices. (C) 2015 Elsevier Ltd. All rights reserved.
机译:掺有V离子的硫化锡(IV)(SnS2)是有前途的中带太阳能电池材料。在这项工作中,我们证明了使用喷雾热解沉积方法制备Sn0.75V0.25S2和Sn0.75W0.25S2薄膜的可能性。当使用水/乙醇比例为9:1的混合物作为溶剂并且沉积温度设定为360摄氏度时,成功进行了报道。样品通过X射线衍射,原子力显微镜,显微拉曼光谱和UV-Vis-NIR光学透射率测量。数据分析表明,所有样品均为无杂质的结晶。光传输数据表明,SnS2的直接和间接带隙分别为2.25和2.15 eV。随着样品中掺入V和W离子,这些值降低。发现直接带隙值落在1.56-1.75 eV范围内,而发现间接带隙值在1.55-1.70 eV范围内。此外,掺杂的影响使光吸收系数在从可见光区域到近红外区域的宽范围内近似为其值的两倍。这些发现表明,Sn0.75V0.25S2和Sn0.75W0.25S2可用作光伏器件中的新型潜在太阳能吸收剂。 (C)2015 Elsevier Ltd.保留所有权利。

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