Development Strategy of Thin Film Solar Cells: Low-cost & High-efficiency

Tae-Won Kim
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Abstract

Thin film solar cells have attracted much attention due to their potentials in efficiency as well as cost. Among the thin film solar cells, Cu(Ga,In)Se2 (CIGS) compound semiconductors have been extensively studied as a promising absorber material for utilizing solar energy. In fact, the CIGS solar cells have shown a maximum cell efficiency exceeding 22.9% in the laboratory scale. Various technologies, that include co-evaporation, 2-step sputtering, and chemical vapor deposition, have been developed to fabricate high efficiency CIGS solar cell. In present, commercialization of CIGS has achieved using 2-step sputtering process, by Japanese company Solar Frontier Co.. Nevertheless, cost and efficiency issues are still important in CIGS solar cell manufacturing. Several years ago, our group have suggested one-step sputtering process, in which we do not carry out an additional selenization process, as a promising fabrication technologies of CIGS thin films. The process has the potential to manufacture high efficiency CIGS solar cell at relatively low cost. In this presentation, we report that our results on the CISG solar cells fabricated using one-step sputtering process and discuss the development strategy of thin film solar cells in view point of cost and efficiency.
薄膜太阳能电池的发展策略:低成本与高效率
薄膜太阳能电池因其在效率和成本方面的潜力而备受关注。在薄膜太阳能电池中,Cu(Ga,In)Se2 (CIGS)化合物半导体作为一种很有前途的太阳能吸收材料得到了广泛的研究。事实上,在实验室规模上,CIGS太阳能电池的最大电池效率超过22.9%。利用共蒸发、两步溅射、化学气相沉积等多种技术制备高效CIGS太阳能电池。目前,CIGS的商业化已经实现了两步溅射工艺,由日本公司太阳能前沿公司。然而,成本和效率问题仍然是CIGS太阳能电池制造的重要问题。几年前,我们小组提出了一步溅射工艺,其中我们不进行额外的硒化过程,作为一种有前途的CIGS薄膜制造技术。该工艺具有以较低的成本制造高效率CIGS太阳能电池的潜力。在本报告中,我们报告了一步溅射法制备CISG太阳能电池的结果,并从成本和效率的角度讨论了薄膜太阳能电池的发展策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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