磁控溅射沉积Sb2Se3薄膜:物理性质表征及其与光伏的相关性

S. Gundogan, L. Ozyuzer, G. Aygun, A. Cantas
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引用次数: 1

摘要

吸收层是太阳能电池结构的重要组成部分,因为它在决定效率方面起着重要作用。由于硫族化合物的性质被深入研究,Sb2Se3材料引起了人们的关注。在薄膜技术中,提高性能的最有效途径是提高光子吸收速率、延长材料寿命、载流子效率和界面质量。Sb2Se3由于其光电特性而备受关注。Sb2Se3具有合适的带隙(Eg),长期的材料稳定性以及相对简单的组成,无毒且元素丰富。所有这些特性使Sb2Se3成为薄膜光伏(pv)吸收层的有希望的候选者。在本研究中,采用直流磁控溅射法在碱石灰玻璃(SLG)衬底上生长Sb2Se3薄膜。系统地研究了Sb2Se3薄膜的形态、结构和光学性质与光伏应用中厚度的关系。我们的研究结果表明,光传输,吸收行为和带隙能量强烈依赖于薄膜的厚度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magnetron Sputtering Deposition of Sb2Se3 Thin Films: Physical Property Characterizations and Its Relevance for Photovoltaics
The absorber layer is a significant part of the solar cell configuration because of its role in determining the efficiency. Since the properties of the chalcogenides have been studied intensively, the Sb2Se3 material has come into prominence. In thin film technology, the most effective ways of increasing the performance are the rate of photon absorption, long material life, carrier efficiency and the quality of the interface. Sb2Se3 gets more attention than others due to its optoelectronic properties. Sb2Se3 has a suitable band gap (Eg), long term material stability, and a relatively simple composition with non-toxic and earth abundant elements. All these features make Sb2Se3 a promising candidate for use as an absorber layer in thin film photovoltaics (PVs). In this study, Sb2Se3 films have been grown with DC magnetron sputtering method onto soda lime glass (SLG) substrates with different time durations. Morphological, structural, and optical properties of Sb2Se3 thin films were systematically investigated as a function of the thickness for photovoltaic applications. Our results indicate that the optical transmission, absorption behavior, and bandgap energy are strongly dependent on the thickness of the film.
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