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Structural and optical properties of Fe-doped SnS2 nanoflakes prepared by molten salt solid state reaction

机译:熔融盐固相反应制备的Fe掺杂SnS2纳米片的结构和光学性质

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Tin (IV) disulfides (SnS2) doped with Fe ions are prepared through the molten salt solid state reaction at 280 degrees C and the effect of the Fe-doping on their structural and optical properties is reported. They were found to be nanocrystalline hexagonal structure with nanoflakes morphology with an average size 30 nm. The analysis of the optical data showed that all the samples are indirect semiconductors. Two absorption bands are observed in their optical diffuse reflectance spectra which indicate setting of two photons absorption processes due to formation of Fe intermediate band. The band gaps EN and Er that correspond to the two photons absorptions are found to vary from 1.49 to 1.09 eV and 0.76 to 0.93 eV, respectively. The most significant findings is that the sum of E-gH(Ind) and E-gL(Ind) has values between 2.25 and 2.02 eV which reproduces or slightly enhances the band gap value of the parent SnS2 (2.01 eV). This finding is directly related with the perseveration of the output voltage (V-o) which is a major condition required for realization of intermediate band solar cells with high solar conversion efficiency. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过在280摄氏度下的熔融盐固态反应制备了掺杂有Fe离子的二硫化锡(IV)(SnS2),并报道了Fe掺杂对其结构和光学性质的影响。发现它们是具有纳米薄片形态的纳米晶体六边形结构,平均尺寸为30nm。光学数据分析表明,所有样品均为间接半导体。在其光学漫反射光谱中观察到两个吸收带,这表明由于形成了Fe中间带,导致两个光子吸收过程的设定。发现对应于两个光子吸收的带隙EN和Er分别在1.49至1.09 eV和0.76至0.93 eV之间变化。最重要的发现是E-gH(Ind)和E-gL(Ind)的总和在2.25和2.02 eV之间,从而重现或稍微提高了母体SnS2的带隙值(2.01 eV)。该发现与输出电压(V-o)的持续变化直接相关,这是实现具有高太阳能转换效率的中带太阳能电池所需的主要条件。 (C)2015 Elsevier Ltd.保留所有权利。

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