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- W2566639593 abstract "SUMMARY The present status and current research directions of photo- voltaic arrays as primary power systems for space are reviewed. There have recently been great advances in the technology of thin-film solar cells for terrestrial applications. In a thin- film solar cell the thickness of the active element is only a few microns; transfer of this technology to space arrays could result in ultralow-weight solar arrays with potentially large gains in specific power. Recent advances in thin-film solar cells are reviewed, including polycrystalline copper-indium selenide (CuInSe2) and related I-III-VI2 compounds, polycrystalline cadmium telluride and related II-VI compounds, and amorphous si1icon:hydrogen and alloys. The best experimental efficiency on thin-film solar cells to date is 12 percent AM0 for CuInSe2. This efficiency is likely to be increased in the next few years. The radiation tol- erance of thin-film materials is far greater than that of single- crystal materials. CuInSe2 shows no degradation when exposed" @default.
- W2566639593 created "2017-01-06" @default.
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- W2566639593 date "1989-01-01" @default.
- W2566639593 modified "2023-09-23" @default.
- W2566639593 title "Advances in Thin-Film Solar Cells for Lightweight Space" @default.
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