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- W106999852 abstract "A novel approach of the low-temperature processing for nanocrystalline silicon is overviewed. Contrary to the empirical rule between the solar-cell efficiency and the crystallite size, nanocrystalline-silicon-based solar cells demonstrate an efficiency higher than 10% in spite of the small size of 10 nm which is several orders of magnitude smaller than the conventional polycrystalline materials with a comparable efficiency. A predominant cause of the high efficiency arises from hydrogen, which passivates the grain-boundary defects. The hydrogen has other beneficial roles such as improvement of the crystalline fraction at lower temperatures, improvement of the crystallinity for boron-doped thin layers as used windows, and passivation of oxygen-related donors that decrease the open-circuit voltage. These beneficial roles overcome the disadvantage of small crystallite size at low-temperatures. Nanocrystalline-silicon solar cells on plastic substrate are also demonstrated." @default.
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- W106999852 date "2004-01-01" @default.
- W106999852 modified "2023-09-27" @default.
- W106999852 title "Low-Temperature Fabrication of Nanocrystalline-Silicon Solar Cells" @default.
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- W106999852 doi "https://doi.org/10.1007/978-3-662-10549-8_8" @default.
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