首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Influence of silver incorporation on the structural, optical and electrical properties of spray pyrolyzed indium sulflde thin films
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Influence of silver incorporation on the structural, optical and electrical properties of spray pyrolyzed indium sulflde thin films

机译:银掺入对喷雾热解铟硫型薄膜结构,光学和电性能的影响

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In this study, a simple and cost effective route to tailor the structural, electrical and optical properties of the indium sulfide (In_2S_3) thin films have been presented. Effects of silver incorporation via in situ doping have been investigated in detail using various characterization tools. XRD patterns confirmed that all of the spray-pyrolyzed films had nanocrystalline nature. Both XRD and Raman analysis confirmed a phase change occurred at the silver concentrations exceeded 10% of the indium concentration in the precursor solution. Raman spectra of the films also revealed that bonding of sulfur with silver atoms became apparent when the silver concentration was exceeded 10%. UV-VIS spectrum showed that increase in silver atomic percent in the films caused decreasing the optical band gap. Moreover, it was observed that silver incorporation enhanced the light sensitization of the In_2S_3 thin films. The photosensitivity of the films with 20% silver was about 2 × 10~3, which was 10× higher than that of samples with no silver. This indicates the huge potential for using silver incorporated In_2S_3 thin films as the window layer of thin film solar cells. Furthermore, all of the sprayed films were n-type and showed a room temperature resistivity varying between ~10~2 and ~10~5 Ω cm. As a result, morphological, structural, optical and electrical characterization of the spray pyrolyzed In_2S_3 films provided that in situ root of silver incorporation used in this study is a very promising method to tailor the physical properties of the In_2S_3 for thin film solar cell applications even at very low silver concentrations.
机译:在该研究中,已经介绍了一种简单且具有成本效益的途径来定制硫化铟(In_2S_3)薄膜的结构,电气和光学性质。使用各种表征工具详细研究了通过原位掺杂的银掺入的影响。 XRD图案证实,所有喷雾热解膜具有纳米晶体性质。 XRD和拉曼分析均证实了在银浓度超过前体溶液中铟浓度的10%发生的相变。薄膜的拉曼光谱还显示,当银浓度超过10%时,硫与银原子的结合变得明显。 UV-Vis光谱显示薄膜中的银原子百分比增加引起的光学带隙。此外,观察到银掺入增强了IN_2S_3薄膜的光致敏。 20%银膜的光敏性约为2×10〜3,比没有银的样品高出10倍。这表明使用银掺入IN_2S_3薄膜作为薄膜太阳能电池的窗口层的巨大电位。此外,所有喷涂的薄膜都是n型,并显示室温电阻率,在〜10〜2和〜10〜5Ωcm之间变化。结果,喷雾热解的形态学,结构,光学和电学特性,但是本研究中使用的银掺入的原位根部是一种非常有希望的方法,用于根据薄膜太阳能电池应用来定制IN_2S_3的物理性质在非常低的银浓度下。

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