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Growth of Cu2ZnSnS4 absorber layer on flexible metallic substrates for thin film solar cell applications

机译:在薄膜太阳能电池应用中,在柔性金属基板上生长Cu2ZnSnS4吸收层

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摘要

In this work, Cu2ZnSnS4 (CZTS) absorber layers were fabricated using a two-stage process. Sequentially deposited Cu-Zn-Sn thin film layers on metallic foils were annealed in an Ar + S2(g) atmosphere. We aimed to investigate the role of flexible titanium and molybdenum foil substrates in the growth mechanism of CZTS thin films. The Raman spectra and X-ray photoelectron spectroscopy analyses of the sulfurized thin films revealed that, except for the presence of Sn-based secondary phases, nearly pure CZTS thin films were obtained. Additionally, the intense and sharp X-ray diffraction peak from the (112) plane provided evidence of good crystallinity. Electron dispersive spectroscopy analysis indicated sufficient sulfur content but poor Zn atomic weight percentage in the films. Absorption and band-gap energy analyses were carried out to confirm the suitability of CZTS thin films as the absorber layer in solar cell applications. Hall effect measurements showed the p-type semiconductor behavior of the CZTS samples. Moreover, the back contact behavior of these metallic flexible substrates was investigated and compared. We detected formation of cracks in the CZTS layer on the molybdenum foils, which indicates the incompatibility of molybdenum's thermal expansion coefficient with the CZTS structure. We demonstrated the application of the magnetron sputtering technique for the fabrication of CZTS thin films on titanium foils having lightweight, flexible properties and suitable for roll-to-roll manufacturing for high throughput fabrication. Titanium foils are also cost competitive compared to molybdenum foils. © 2015 Elsevier B.V.
机译:在这项工作中,Cu2ZnSnS4(CZTS)吸收层是采用两阶段工艺制造的。在Ar + S2(g)气氛中对在金属箔上依次沉积的Cu-Zn-Sn薄膜层进行退火。我们旨在研究柔性钛和钼箔基材在CZTS薄膜生长机理中的作用。硫化薄膜的拉曼光谱和X射线光电子能谱分析表明,除了存在基于Sn的次级相之外,还获得了几乎纯净的CZTS薄膜。此外,从(112)平面强烈而尖锐的X射线衍射峰提供了良好结晶性的证据。电子分散光谱分析表明膜中硫含量足够,但锌原子重量百分数却很差。进行吸收和带隙能量分析以确认CZTS薄膜适合用作太阳能电池应用中的吸收层。霍尔效应测量显示了CZTS样品的p型半导体行为。此外,研究和比较了这些金属柔性基板的背接触行为。我们检测到在钼箔上的CZTS层中形成了裂纹,这表明钼的热膨胀系数与CZTS结构不兼容。我们展示了磁控溅射技术在钛箔上CZTS薄膜的制造中的应用,该薄膜具有轻巧,灵活的特性,适用于高产量制造的卷对卷制造。与钼箔相比,钛箔在成本上也具有竞争力。 ©2015 Elsevier B.V.

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