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A high efficiency thin film silicon solar cell and module
Authors:Kenji Yamamoto  Akihiko Nakajima  Masashi Yoshimi  Toru Sawada  Susumu Fukuda  Takashi Suezaki  Mitsuru Ichikawa  Yohei Koi  Masahiro Goto  Tomomi Meguro  Takahiro Matsuda  Masataka Kondo  Toshiaki Sasaki  Yuko Tawada
Affiliation:

Kaneka Corporation, 2-1-1, Hieitsuji, Otsu, Shiga 520-0104, Japan

Abstract:A photoelectric conversion efficiency of over 10% has been achieved in thin-film microcrystalline silicon solar cells which consist of a 2 μm thick layer of polycrystalline silicon. It was found that an adequate current can be extracted even from a thin film due to the very effective light trapping effect of silicon with a low absorption coefficient. As a result, this technology may eventually lead to the development of low-cost solar cells. Also, an initial aperture efficiency as high as 13.5% has been achieved with a large area (91 cm × 45 cm) tandem solar cell module of microcrystalline silicon and amorphous silicon (thin film Si hybrid solar cell). An even greater initial efficiency of 14.7% has been achieved in devices with a small size (area of 1 cm2), and further increases of efficiency can be expected.
Keywords:Solar cell  Amorphous silicon  Microcrystalline silicon  Light trapping  Plasma chemical vapor  Deposition
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