Solar cell and a method for the manufacture thereof

Batteries: thermoelectric and photoelectric – Photoelectric – Cells

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136261, 257 51, 257 55, 257184, 257431, 257461, 437 2, 437 4, H01L 31072, H01L 3120

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054567645

ABSTRACT:
Solar cell made using a heterojunction formed from a crystalline silicon layer of a first conductivity type and a hydrogenated amorphous silicon film of a second conductivity type different from the first conductivity type. The hydrogenated amorphous silicon film includes oxygen.

REFERENCES:
K. Takahashi et al., "Amorphous Silicon Solar Cells", John Wiley & Sons, New York (1986), p. 106.
Ichikawa et al., "12% Two-Stacked a-Si:H Tandem Cells with a New P-Layer Structure", Twenty Second IEEE Photovoltaic Specialists Conference--1991, vol. II, pp. 1296-1301.
Technical Digest, 5th International Photovoltaic Science and Engineering Conference, Nov. 26-30, 1990, Current-Voltage Characteristics of ECR produced n-.mu.c-SIC/p-c-Si Heterojunction Solar Cell, Y. Matsumoto et al., pp. 692-696.
The Conference Record of The Twenty First IEEE Photovoltaic Specialists Conference-1990, vol. II, May 21-25, 1990, a-Si/Poly-Si Two-and Four-Terminal Tandem Type Solar Cells, Y. Matsumoto et al., pp. 1420-1425.
Journal of Applied Physics, vol. 67, No. 10, 15 May 1990, A new type of high efficiency with a low-cost solar cell having the structure of a .mu.c-SIC/polycrystalline silicon heterojunction, Y. Matsumoto et al., pp. 6538-6543.
6th International Phtoovoltaic Science and Engineering Conference (PVSEC-6), Feb. 10-14, 1992, a-Si//poly-Si Four Terminal Stacked Solar Cell Having an Efficiency More than 19%, W. Ma et al., pp. 463-468.
Amorphous Silicon Photoelectric Conversion Element, 27 E 479, Japanese 61-208878(A), K. Kumano, Sep. 17, 1986.

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